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    Publication numberUS20100010686 A1
    Publication typeApplication
    Application numberUS 12/402,996
    Publication dateJan 14, 2010
    Filing dateMar 12, 2009
    Priority dateJul 11, 2008
    Also published asUS8949135, US8983853, US8990096, US20100010687, US20100010923, US20120265656, US20170061556
    Publication number12402996, 402996, US 2010/0010686 A1, US 2010/010686 A1, US 20100010686 A1, US 20100010686A1, US 2010010686 A1, US 2010010686A1, US-A1-20100010686, US-A1-2010010686, US2010/0010686A1, US2010/010686A1, US20100010686 A1, US20100010686A1, US2010010686 A1, US2010010686A1
    InventorsMichael Wayne Shore, Stuart Douglas Dwork
    Original AssigneeMichael Wayne Shore
    Export CitationBiBTeX, EndNote, RefMan
    External Links: USPTO, USPTO Assignment, Espacenet
    Distributing Alternatively Generated Power to a Real Estate Development
    US 20100010686 A1
    Abstract
    A system for distributing alternatively generated power to a real estate development having at least two individual properties includes at least one alternative energy power generator. A distribution station is coupled to the at least one alternative energy power generator. A plurality of real estate properties are coupled to the distribution station. A written instrument associates ownership rights in a portion of the power received from the alternative energy power generator with ownership of at least one of the plurality of real estate properties. A method includes providing a plurality of real estate properties and an alternative energy power generator that forms a cooperative power farm coupled to a distribution station. A credit of power provided from the cooperative power farm to the distribution station is metered. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties.
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    Claims(23)
    1. A system for distributing alternatively generated power to a real estate development, the real estate development having at least two individual properties, the system comprising:
    at least one alternative energy power generator;
    a distribution station coupled to the at least one alternative energy power generator;
    the at least two real estate properties each coupled to the distribution station; and
    a written instrument associating ownership rights in a portion of the power received from the alternative energy power generator with ownership of at least one of the real estate properties.
    2. The system of claim 1, further comprising:
    electrical power distribution lines coupling the distribution station to the at least two individual properties.
    3. The system of claim 2, wherein the written instrument grants ownership rights in the electrical power distribution lines.
    4. The system of claim 1, wherein the ownership rights in the portion of the power are one of inseparably tied to ownership of the real estate properties and severable from ownership of the real estate properties.
    5. The system of claim 1, wherein the written instrument grants ownership rights in one of the alternative energy power generator and the distribution station.
    6. The system of claim 1, wherein the portion of the power provides a quantity of power at least partially determined by a percentage of power generated by the at least one alternative energy power generator.
    7. The system of claim 1, wherein the portion of the power provides a quantity of power at least partially determined by a number of power units of power generated by the at least one alternative energy power generator.
    8. The system of claim 1, wherein the portion of the power provides a quantity of power at least partially determined by equal distribution of power generated by the at least one alternative energy power generator to each of the at least two individual properties.
    9. The system of claim 1, wherein the portion of the power provides a quantity of power at least partially determined by an area of each of the at least two individual properties.
    10. The system of claim 1, wherein the portion of the power provides a quantity of power at least partially determined by an initial payment associated with at least one of the at least two individual properties.
    11. The system of claim 1, wherein the portion of the written instrument associating ownership rights is optional.
    12. The system of claim 1, wherein the written instrument contains restrictions preventing encumbrance of the power received from the alternative energy power generator without encumbrance of at least one of the plurality of real estate properties.
    13. The system of claim 1, wherein the written instrument contains restrictions permitting encumbrance of the power received from the alternative energy power generator without encumbrance of the real estate properties.
    14. A method for distributing alternatively generated power to a real estate development comprising:
    providing a plurality of real estate properties;
    providing an alternative energy power generator that forms a cooperative power farm coupled to a distribution station;
    metering a credit of power provided from the cooperative power farm to the distribution station; and
    including rights to a portion of the metered credit with ownership of at least one of the plurality of real estate properties.
    15. The method of claim 14, further comprising:
    sensing a power delivery to at least one of the plurality of real estate properties.
    16. The method of claim 15, further comprising:
    determining a difference between the metered power delivery to the distribution station from the cooperative power farm and the sensed power delivery to the at least one of the plurality of real estate properties.
    17. The method of claim 16, further comprising:
    crediting at least one of the plurality of real estate properties for metered power delivered to the distribution station from the cooperative power farm in excess of the sensed power delivered to the at least one of the plurality of real estate properties.
    18. The method of claim 14, wherein the power received from the cooperative power farm is in the form of a hydrocarbon gas.
    19. The method of claim 18, wherein the gas is one of methane and natural gas.
    20. The method of claim 14, wherein the power received from the cooperative power farm is in the form of one of a hydrogen bearing gas and electricity.
    21. The method of claim 14, further comprising:
    positioning the cooperative power farm at a remote site that is not adjacent to the plurality of real estate properties.
    22. The method of claim 14, further comprising:
    positioning the cooperative power farm at a proximate site that is adjacent to the plurality of real estate properties.
    23. The method of claim 14, further comprising:
    providing an option to the at least one of the plurality of real estate properties for a percentage purchase of the power provided by the cooperative power farm.
    Description
      CROSS-REFERENCE TO RELATED APPLICATIONS
    • [0001]
      This application claims the benefit of U.S. Provisional Patent Application No. 61/079,978, filed on Jul. 11, 2008, entitled “Distributing Alternatively Generated Power to a Real Estate Development,” the entire contents of which are incorporated by reference herein.
    • BACKGROUND OF THE INVENTION
    • [0002]
      Embodiments of the present invention are generally directed to the area of alternative energy distribution, ownership, billing, or the like, and more specifically, to distributing alternatively generated power to one or more real estate development projects or areas.
    • [0003]
      Currently, energy costs have been escalating. A residence that is at least partially self-sufficient is a benefit both economically and environmentally. Often, alternative energy installations include unsightly equipment, but to tie the source to the residence, the equipment must be incorporated into the residence or co-located on the residence lot or real estate parcel.
    • [0004]
      Additionally, when an alternative energy generator installation is located on a home, its efficiency may be reduced because of surrounding buildings, topography, or the direction in which the home faces. To make such an installation efficient, it might also be necessary to deforest the lot. If a single story home having solar panels installed is surrounded by two story homes or trees, shadowing may occur which would reduce efficiency, or the roof sides may not face the best direction to accumulate the solar energy. The structure may also have to be modified to handle the additional load of the panels.
    • [0005]
      Additionally, neighbors often complain or seek to block the installation of alternative energy generators for aesthetic reasons, noise generated by certain types of systems, or the fear that such systems pose a health or safety hazard in the event of malfunction.
    • [0006]
      Maintenance may prove to be problematic due to the fact that solar panels are typically installed on a roof, which is high off of the ground and may prove hazardous. Installations of alternative energy generators are also typically financially separate from the structure in terms of mortgage, so that any expense would normally handled on less favorable terms than a mortgage loan. The cost of energy for the average consumer is largely driven by carbon based fuels. These same fuels are in decline and if they follow the law of supply and demand, will increase in price as they decline in abundance, increasing the cost of residing in a home.
    • [0007]
      Currently, the cost for energy is at an inflation adjusted high and is expected to remain high for the foreseeable future. This increase in cost has been escalating, and a hedge against its continued increase has been sought after.
    • [0008]
      In concert with the sharp rise in the cost of electricity, the values of homes have fallen over the last few years. As such, homeowners are very sensitive to the cost of energy associated with a home. If a residential homeowner could effectively purchase energy once, as part of the purchase of the home, his ongoing costs would be reduced or eliminated, and the value of the property, which would become energy and income producing, or income neutral with respect to energy costs, would increase. This decrease in follow-on energy costs would make a property more valuable for new developments, existing neighborhoods, and offsite cooperative energy farms.
    • [0009]
      There are multiple ways to distribute alternatively generated power to a real estate development. During construction of a subdivision, a developer could set aside a percentage of the land to build an alternative energy installation and include, in the cost of the home, rights to a percentage of the generated power that are permanently tied to the real estate purchased. This would allow the homebuilder to tout the subdivision as being “green” and include an ongoing supply of free energy. Additionally, many state and federal laws do or will require power utilities to purchase excess energy produced by alternative energy installations. These requirements add to the economic value of a given property or properties that include as a permanent, transferable feature a percentage of energy production from an alternative energy installation. Any excess energy produced and sold could be either paid as dividends, applied to real estate taxes, common area maintenance or improvements, homeowners' association dues, or used for alternative energy system maintenance.
    • [0010]
      A grid tied system is proposed as one embodiment in which the cooperative energy farm feeds directly into an energy grid and energy credits are allotted to each real estate owner whose property is entitled to the credit. In this way energy used on other parts of the grid are offset by the energy farm and only the net usage is charged. This system also reduces the load on the existing electrical grid, which increases the buffer that the utilities need. The real estate property owner would be credited for new kilowatt hours input to the power grid.
    • [0011]
      The hurdles of separate and complex installation and maintenance, separate expense from a mortgage payment, aesthetic limitations, and inefficiencies in layout mitigate against individual installation of alternative energy generators.
    • [0012]
      Therefore, it is desirable to provide a method of combining the cooperative needs of homeowners to maximize the efficiency and concomitant economic benefit for distributing alternatively generated power to a real estate development, or stated another way, the association or linking of a cooperative energy farm to a specific residential property, such that a continuous renewable supply of electricity is sold with the property. More particularly, it is desirable to have a property that is at least partially self sufficient from an energy standpoint by virtue of the cooperative energy farm. This self-sufficiency would reduce the ongoing cost of owning the property and increase its net worth. This linkage of the real property and energy forms a hedge to mitigate the rising cost of energy and its effect on consumers, especially homeowners, and protects the homeowners from the depreciation of their real estate investment. The homeowner not only benefits from the normal appreciation tied to the ownership of the real estate, but also benefits from the rise in energy costs by making the value of the real estate increase because of the energy component.
    • SUMMARY OF THE INVENTION
    • [0013]
      A preferred embodiment of the present invention comprises a system for distributing alternatively generated power to a real estate development. The real estate development has at least two individual properties. The system includes at least one alternative energy power generator. A distribution station is coupled to the at least one alternative energy power generator. A plurality of real estate properties are coupled to the distribution station. A written instrument associates ownership rights in a portion of the power received from the alternative energy power generator with ownership of at least one of the plurality of real estate properties.
    • [0014]
      A further embodiment of the present invention comprises a method for distributing alternatively generated power to a real estate development. The method includes providing a plurality of real estate properties. An alternative energy power generator is provided that forms a cooperative power farm coupled to a distribution station. A credit of power provided from the cooperative power farm to the distribution station is metered. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties.
    • BRIEF DESCRIPTION OF THE DRAWINGS
    • [0015]
      FIG. 1 is a schematic block diagram that illustrates a first preferred embodiment of a system for distributing alternatively generated power to a real estate development;
    • [0016]
      FIG. 2 is a schematic block diagram that illustrates a second preferred embodiment of a system for distributing alternatively generated power to a real estate development;
    • [0017]
      FIG. 3 is a schematic block diagram that illustrates a third preferred embodiment of a system for distributing alternatively generated power to a real estate development;
    • [0018]
      FIG. 4 is a schematic block diagram that illustrates a fourth preferred embodiment of a system for distributing alternatively generated power to a real estate development;
    • [0019]
      FIG. 5 is a flow diagram that illustrates a first method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0020]
      FIG. 6 is a flow diagram that illustrates a second method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0021]
      FIG. 7 is a flow diagram that illustrates a third method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0022]
      FIG. 8 is a flow diagram that illustrates a fourth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0023]
      FIG. 9 is a flow diagram that illustrates a fifth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0024]
      FIG. 10 is a flow diagram that illustrates a sixth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0025]
      FIG. 11 is a flow diagram that illustrates a flow diagram of an embodiment of distributing alternatively generated power to a real estate development;
    • [0026]
      FIG. 12 is a flow diagram that illustrates an eighth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0027]
      FIG. 13 is a flow diagram that illustrates a ninth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0028]
      FIG. 14 is a flow diagram that illustrates a tenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0029]
      FIG. 15 is a flow diagram that illustrates an eleventh method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0030]
      FIG. 16 is a flow diagram that illustrates a twelfth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0031]
      FIG. 17 is a flow diagram that illustrates a thirteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0032]
      FIG. 18 is a flow diagram that illustrates a fourteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0033]
      FIG. 19 is a flow diagram that illustrates a fifteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0034]
      FIG. 20 is a flow diagram that illustrates a sixteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0035]
      FIG. 21 is a flow diagram that illustrates a seventeenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0036]
      FIG. 22 is a flow diagram that illustrates an eighteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0037]
      FIG. 23 is a flow diagram that illustrates a nineteenth method of an embodiment of distributing alternatively generated power to a real estate development;
    • [0038]
      FIG. 24 is a flow diagram that illustrates a first software of an embodiment of distributing alternatively generated power to a real estate development;
    • [0039]
      FIG. 25 is a flow diagram that illustrates a second software of an embodiment of distributing alternatively generated power to a real estate development;
    • [0040]
      FIG. 26 is a flow diagram that illustrates a third software of an embodiment of distributing alternatively generated power to a real estate development; and
    • [0041]
      FIG. 27 is a flow diagram that illustrates a fourth software of an embodiment of distributing alternatively generated power to a real estate development.
    • DETAILED DESCRIPTION OF THE INVENTION
    • [0042]
      With respect to the description contained herein, it is to be realized that all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present application. Therefore, the description contained herein is considered as illustrative only of the principles of certain preferred embodiments. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit any embodiment to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of one of the embodiments. Additionally, the words “a” and “an”, as used in the claims and in the corresponding portions of the specification, mean “at least one.”
    • [0043]
      Referring now to FIG. 1, a first embodiment of a system 100 for distributing alternatively generated power to a real estate development is shown having at least one alternative energy electrical power generator 110, 112, 114, forming a cooperative power farm 116. A power grid 118 receives electrical power from the cooperative power farm 116. A metering credit system 120 determines a metered credit of power received by the power grid 118 from the cooperative power farm 116. A plurality of real estate properties 122, 124, 126 are electrically coupled to the power grid 118. Each of the real estate properties 122, 124, 126 receives at least a portion of the metered credit of power, and rights to the portion of the metered credit are linked to or included with ownership of at least one of the plurality of real estate properties 122, 124, 126. The power supplied by the cooperative power farm 116 may be supplied to a public utility grid, private power grid, or the like. The metering system 120 may be analog or digital in operation. The real estate properties 122, 124, 126 may encompass private residences, townhomes, apartments, duplexes, or the like, and may be either separate residences or agglomerated residences, such as in high-rises or the like. The ownership may be fee simple, condominium, co-operative in structure, or the like. The real estate may additionally encompass non-residential properties, such as businesses, manufacturing enterprises, or the like.
    • [0044]
      The electrical power generator 110, 112, 114 may comprise one or more power generator types, be it electrical, or other types of energy, such as natural gas or the like, and may, for example, include at least one solar powered generator 110 and/or at least one wind powered generator 112 and/or at least one geothermal powered generator 114 or the like. Other electrical power generators such as ocean wave electrical generators, hydroelectric generators, or the like are also included within the scope of this embodiment. The system 100 may include a power management system 128 monitoring the electrical power provided to at least one of the plurality of real estate properties 122, 124, 126. A portion of the electrical power is provided to at least one of the plurality of real estate properties 122, 124, 126 from a source 130 other than the cooperative power farm 116. The monitoring may be performed via wired or wireless communication, or may include Internet connectivity. The power farm 116 may also include an inverter 132. The at least one real estate property 122, 124, 126 may include a connection 134 to a public utility company 130, a connection 136 to the credit metering system 120, and a connection 138 to the grid 118. Additionally, the system 100 may include a power usage alert for updating a resident of the plurality of real estate properties 122, 124, 126 if a power usage spike is detected. The system 100 may also include a severe weather input coupled to the at least one electrical power generator for placing the generator in a stand-by state to reduce possible damage due to severe weather, and a solar panel having a resilient backing, wherein the resilient backing is turned toward the severe weather.
    • [0045]
      Referring now to FIG. 2, a second embodiment of a system 200 for distributing alternatively generated power to a real estate development is shown having at least one alternative energy power generator 210, 212 forming a cooperative power farm 213. A distribution station 214 receives power from the cooperative power farm, and a metering credit system 216 determines a metered credit of power received by the distribution station 214 from the cooperative power farm. A plurality of real estate properties 218, 220, 222 are coupled via power distribution lines 224, 226, 228 to the distribution station 214. The plurality of real estate properties 218, 220, 222 receives at least a portion of the metered credit of power. Rights to the portion of the metered credit are linked to or included with ownership of at least one of the plurality of real estate properties 218, 220, 222.
    • [0046]
      The power received from the cooperative power farm 213 may be in the form of a hydrogen bearing gas or a hydrocarbon gas, such as methane 212, natural gas 210, or the like, or power may be received in the form of electricity. The portion of the metered credit provides a quantity of power at least partially determined by one or more of a percentage of the power generated by the cooperative power farm 213, a number of units of metered credit or the like, an area of the real estate property or the like, and an initial payment. The rights to the portion of the metered credit may be optional.
    • [0047]
      Referring now to FIG. 3, a third embodiment of a system 300 for distributing alternatively generated power to a real estate development is shown, wherein the real estate development has at least two individual properties 310, 312, 314. The system 300 includes at least one alternative energy power generator 316, 318, a distribution station 320 having a connection 322 to the at least one alternative energy power generator 316, 318, and a plurality of real estate properties 310, 312, 314 coupled via power distribution lines 324, 326, 328 to the distribution station 320. An instrument 330 associates ownership rights in a portion of the power received from the alternative energy power generator 316, 318 with ownership of at least one of the plurality of real estate properties 310, 312, 314. Ownership rights in the portion of the power may be inseparably tied to ownership of the real estate properties 310, 312, 314, severable from ownership of the real estate properties 310, 312, 314, or the like.
    • [0048]
      The portion of power described in the instrument 330 provides a quantity of power at least partially calculated or determined by a percentage of power generated by the at least one alternative energy power generator 316, 318, a number of power units of power generated by the at least one alternative energy power generator 316, 318, equal distribution of power generated by the at least one alternative energy power generator 316, 318 to each of the at least two individual properties 310, 312, 314, an area of each of the at least two individual properties 310, 312, 314, and an initial payment associated with at least one of the at least two individual properties 310, 312, 314. Additionally, the portion of the instrument 330 associating ownership rights of the portion of power with the ownership rights of the at least two individual properties 310, 312, 314 may be optional.
    • [0049]
      The system 300 may also include a written instrument granting ownership rights 332 in the at least one alternative energy power generator 316, 318, an instrument granting ownership rights 340 in the distribution station 320 and electrical power distribution lines 324, 326, 328, and an instrument granting ownership rights 334, 336, 338 in the electrical power distribution lines 324, 326, 328. As used herein, a written instrument can be a paper or electronic writing. Further, the instrument may optionally contain restrictions that prevent encumbrance of the energy portion without encumbrance of the real property portion, or may allow for the encumbrance as a separate right.
    • [0050]
      Referring now to FIG. 4, a fourth embodiment of a system 400 for distributing alternatively generated power to a real estate development is shown, wherein the real estate development has at least two individual properties 410, 412, 414. The system 400 includes at least one alternative energy power generator 416, 418, a distribution station 420 having a connection 422 to the at least one alternative energy power generator 416, 418, and a plurality of real estate properties 410, 412, 414 coupled via power distribution lines 424, 426, 428 to the distribution station 420. A written instrument 430 associates ownership rights in a portion 432 of the power received from the alternative energy power generator with ownership rights 434, 436, 438 of at least one of the plurality of real estate properties 410, 412, 414. The alternative energy power generator 416, 418 may be hydrogen bearing gas or hydrocarbon gas such as methane or natural gas.
    • [0051]
      FIGS. 5-23 are flow diagrams that illustrate the steps of preferred method embodiments of distributing alternatively generated power to a real estate development and include a number of blocks or modules that may be implemented in software, hardware, firmware, and/or the combination of software, hardware, and/or firmware.
    • [0052]
      Referring to FIG. 5, a first preferred embodiment of distributing alternatively generated power to a real estate development 500 is depicted and includes generating 510 alternative energy electrical power from a cooperative power farm and receiving 512 electrical power from the cooperative power farm by a power grid. A credit of power received by the power grid from the cooperative power farm is metered 514 and distributed 516 to at least one of a plurality of real estate properties electrically coupled to the power grid. The plurality of real estate properties receives at least a portion of the credit of power. Rights to the portion of the metered credit are linked or included with ownership of the at least one of the plurality of real estate properties.
    • [0053]
      FIG. 6 shows a second preferred embodiment of distributing alternatively generated power to a real estate development 600 that includes providing 610 a remote site and a plurality of real estate properties. The remote site is not adjacent to the plurality of real estate properties. Alternative energy electrical power is generated 612 from a cooperative power farm positioned at the remote site. Electrical power from the cooperative power farm is received 614 by a power grid. A credit of power received by the power grid from the cooperative power farm is metered 616 and distributed 618 to at least one of the plurality of real estate properties electrically coupled to the power grid. The plurality of real estate properties receives at least a portion of the credit of power. Rights to the portion of the metered credit are linked or included with ownership of the at least one of the plurality of real estate properties.
    • [0054]
      FIG. 7 depicts a third preferred embodiment of distributing alternatively generated power to a real estate development 700 that includes providing 710 a proximate site and a plurality of real estate properties. The proximate site is adjacent to the plurality of real estate properties. Alternative energy electrical power is generated 712 from a cooperative power farm. Electrical power from the cooperative power farm is received 714 by a power grid. A credit of power received by the power grid from the cooperative power farm is metered 716 and distributed 718 to at least one of a plurality of real estate properties electrically coupled to the power grid. The plurality of real estate properties receives at least a portion of the credit of power. Rights to the portion of the metered credit are included with ownership of the at least one of the plurality of real estate properties.
    • [0055]
      Referring to FIG. 8, a fourth preferred embodiment of distributing alternatively generated power to a real estate development 800 is depicted and includes generating 810 alternative energy electrical power from a cooperative power farm. Electrical power from the cooperative power farm is received 812 by a power grid. A credit of power received by the power grid from the cooperative power farm is metered 814 and distributed 816 to at least one of a plurality of real estate properties electrically coupled to the power grid. The plurality of real estate properties receives at least a portion of the credit of power. Rights to the portion of the metered credit are included with ownership of the at least one of the plurality of real estate properties. An Internet feedback system is updated 818, showing available credit for at least one of the plurality of real estate properties. An Internet status system is also updated 820 for power generation efficiency.
    • [0056]
      FIG. 9 shows a fifth preferred embodiment of distributing alternatively generated power to a real estate development 900 that includes providing 910 a plurality of real estate properties, providing 912 an alternative energy power generator that forms a cooperative power farm coupled to a distribution station, and metering 914 a credit of power provided from the cooperative power farm to the distribution station. Rights to a portion of the metered credit are included 916 with ownership of at least one of the plurality of real estate properties.
    • [0057]
      FIG. 10 depicts a sixth preferred embodiment of distributing alternatively generated power to a real estate development 1000 that includes providing 1010 a remote site, providing 1012 a plurality of real estate properties, and providing 1014 an alternative energy power generator which forms a cooperative power farm that is coupled to a distribution station. The remote cooperative power farm is positioned on the remote site, which is not adjacent to the plurality of real estate properties. A credit of power provided from the cooperative power farm to the distribution station is metered 1016. Rights to a portion of the metered credit are included 1018 with ownership of at least one of the plurality of real estate properties.
    • [0058]
      Referring to FIG. 11, a seventh preferred embodiment of distributing alternatively generated power to a real estate development 1100 is depicted and includes providing 1110 a proximate site, providing 1112 a plurality of real estate properties, and providing 1114 an alternative energy power generator which forms a cooperative power farm that is coupled to a distribution station. The cooperative power farm is positioned on the proximate site, which is adjacent to the plurality of real estate properties. A credit of power provided from the cooperative power farm to the distribution station is metered 1116. Rights to a portion of the metered credit are included 1118 with ownership of at least one of the plurality of real estate properties.
    • [0059]
      FIG. 12 shows an eighth preferred embodiment of distributing alternatively generated power to a real estate development 1200 that includes providing 1210 a plurality of real estate properties, providing 1212 an alternative energy power generator which forms a cooperative power farm that is coupled to a distribution station, and metering 1214 a credit of power provided from the cooperative power farm to the distribution station. Rights to a portion of the metered credit are included 1216 with ownership of at least one of the plurality of real estate properties. A power delivery to at least one of the plurality of real estate properties is sensed 1218 and a difference between the metered power delivery to the distribution station from the cooperative power farm and the sensed power delivery to the at least one of the plurality of real estate properties is determined 1220. At least one of the plurality of real estate properties is credited 1222 for metered power delivered to the distribution station from the cooperative power farm in excess of the sensed power delivered to the at least one of the plurality of real estate properties.
    • [0060]
      FIG. 13 depicts a ninth preferred embodiment of distributing alternatively generated power to a real estate development 1300 that includes providing 1310 a plurality of real estate properties, providing 1312 an alternative energy power generator which forms a cooperative power farm that is coupled to a distribution station, and metering 1314 a credit of power provided from the cooperative power farm to the distribution station. Rights to a portion of the metered credit are included 1316 with ownership of at least one of the plurality of real estate properties. An option is provided 1318 to the at least one of the plurality of real estate properties for a percentage purchase of the power provided by the cooperative power farm.
    • [0061]
      Referring to FIG. 14, a tenth preferred embodiment of distributing alternatively generated power to a real estate development 1400 is depicted and includes subdividing 1410 the real estate development into a plurality of plots. A portion of the subdivided real estate development is dedicated 1412 to alternative energy power generation. An alternative energy power generator is provided 1414, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. Rights to a portion of an output of the cooperative power farm are included 1416 with ownership of at least one of the plurality of plots.
    • [0062]
      FIG. 15 shows an eleventh preferred embodiment of distributing alternatively generated power to a real estate development 1500 that includes subdividing 1510 the real estate development into a plurality of plots. A portion of the subdivided real estate development is dedicated 1512 to alternative energy power generation. An alternative energy power generator is provided 1514, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. Rights to a portion of an output of the cooperative power farm are included 1516 with ownership of at least one of the plurality of plots. A credit of power provided from the cooperative power farm to the power grid is metered 1518.
    • [0063]
      Referring to FIG. 16, a twelfth preferred embodiment of distributing alternatively generated power to a real estate development 1600 is depicted and includes providing 1610 a remote site and subdividing 1612 the real estate development into a plurality of plots. The remote site is not adjacent to the plurality of plots. A portion of the subdivided real estate development is dedicated 1614 to alternative energy power generation. An alternative energy power generator is provided 1616 at the remote site, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. Rights to a portion of an output of the cooperative power farm are included 1618 with ownership of at least one of the plurality of plots.
    • [0064]
      FIG. 17 shows a thirteenth preferred embodiment of distributing alternatively generated power to a real estate development 1700 that includes providing 1710 a proximate site and subdividing 1712 the real estate development into a plurality of plots. The proximate site is adjacent to the plurality of plots. A portion of the subdivided real estate development is dedicated 1714 to alternative energy power generation. An alternative energy power generator is provided 1716 at the proximate site, which forms a cooperative power farm that is electrically coupled to a power grid. Power generation is at least in part generated on the dedicated portion. Rights to a portion of an output of the cooperative power farm are included 1718 with ownership of at least one of the plurality of plots.
    • [0065]
      FIG. 18 depicts a fourteenth preferred embodiment of distributing alternatively generated power to a real estate development 1800 that includes subdividing 1810 the real estate development into a plurality of plots, dedicating 1812 a portion of the subdivided real estate development to alternative energy power generation, and providing 1814 an alternative energy power generator that forms a cooperative power farm electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. Rights to a portion of an output of the cooperative power farm are included 1816 with ownership of at least one of the plurality of plots. An option is provided 1818 to the at least one of the plurality of plots for a percentage purchase of the power provided by the cooperative power farm.
    • [0066]
      Referring to FIG. 19, a fifteenth preferred embodiment of distributing alternatively generated power to a real estate development 1900 is depicted and includes acquiring 1910 a dedicated portion within the real estate development and providing 1912 an alternative energy power generator that forms a cooperative power farm electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. A credit of power provided from the cooperative power farm to the power grid is metered 1914. Rights to a portion of the metered credit are included 1916 with ownership of at least one of a plurality of real estate properties within the real estate development.
    • [0067]
      FIG. 20 shows a sixteenth preferred embodiment of distributing alternatively generated power to a real estate development 2000 having a plurality of real estate properties. The method includes providing 2010 a remote site that is not adjacent to the plurality of real estate properties, and acquiring 2012 a dedicated portion within the real estate development. An alternative energy power generator is provided 2014 at the remote site, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. A credit of power provided from the cooperative power farm to the power grid is metered 2016. Rights to a portion of the metered credit are included 2018 with ownership of at least one of a plurality of real estate properties within the real estate development.
    • [0068]
      FIG. 21 depicts a seventeenth preferred embodiment of distributing alternatively generated power to a real estate development 2100 having a plurality of real estate properties. The method includes providing 2110 a proximate site adjacent to the plurality of real estate properties and acquiring 2112 a dedicated portion within the real estate development. An alternative energy power generator is provided 2114 at the proximate site, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. A credit of power provided from the cooperative power farm to the power grid is metered 2116. Rights to a portion of the metered credit are included 2118 with ownership of at least one of a plurality of real estate properties within the real estate development.
    • [0069]
      Referring to FIG. 22, an eighteenth preferred embodiment of distributing alternatively generated power to a real estate development 2200 is depicted and includes acquiring 2210 a dedicated portion within the real estate development, and providing 2212 an alternative energy power generator, which forms a cooperative power farm that is electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. A credit of power provided from the cooperative power farm to the power grid is metered 2214. Rights to a portion of the metered credit are included 2216 with ownership of at least one of a plurality of real estate properties within the real estate development. A power delivery to the at least one of the plurality of real estate properties is sensed 2218 and a difference between the metered power delivery to the power grid from the cooperative power farm and the sensed power delivery to the at least one of the plurality of real estate properties is determined 2220. At least one of the plurality of real estate properties is credited 2222 for metered power delivered to the power grid from the cooperative power farm in excess of the sensed power delivered to the at least one of the plurality of real estate properties.
    • [0070]
      FIG. 23 shows a nineteenth preferred embodiment of distributing alternatively generated power to a real estate development 2300 that includes acquiring 2310 a dedicated portion within the real estate development and providing 2312 an alternative energy power generator that forms a cooperative power farm electrically coupled to a power grid. Power is at least in part generated on the dedicated portion. A credit of power provided from the cooperative power farm to the power grid is metered 2314. Rights to a portion of the metered credit are included 2316 with ownership of at least one of a plurality of real estate properties within the real estate development. An option is provided 2318 to the at least one of the plurality of real estate properties for a percentage purchase of the power provided by the cooperative power farm.
    • [0071]
      FIG. 24 depicts a first software flow block diagram 2400 for a computer readable media of distributing alternatively generated power to a real estate development that includes instructions for metering 2410 a credit of power delivered from a cooperative power farm to a power grid and sensing 2412 a power delivery to at least two real estate properties. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties. Further instructions are provided for determining 2414 the difference between the metered credit of power and the sensed power delivery to at least one of the plurality of real estate properties.
    • [0072]
      Referring to FIG. 25, a second software flow block diagram 2500 for a computer readable media of distributing alternatively generated power to a real estate development is depicted and includes instructions for metering 2510 a credit of power delivered from a cooperative power farm to a power grid and sensing 2512 a power delivery to at least two real estate properties. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties. Further instructions are provided for determining 2514 the difference between the metered credit of power and the sensed power delivery to at least one of the plurality of real estate properties. The computer readable media also includes instructions for recording 2516 the metered credit of power from a cooperative power farm to the power grid on a time period, averaging 2518 the recorded metered credit of power from the cooperative power farm to the power grid for another time period, comparing 2520 the recorded metered credit of power to the averaged metered credit of power, and alerting 2522 if the comparison is greater than a predetermined threshold.
    • [0073]
      FIG. 26 shows a third software flow block diagram 2600 for a computer readable media of distributing alternatively generated power to a real estate development that includes instructions for metering 2610 a credit of power delivered from a cooperative power farm to a power grid and sensing 2612 a power delivery to at least two real estate properties. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties. Further instructions are provided for determining 2614 the difference between the metered credit of power and the sensed power delivery to at least one of the plurality of real estate properties. The computer readable media also includes instructions for providing 2616, to an Internet website, a status of the metered credit of power from the cooperative power farm and providing 2618, to an Internet website, a status of the metered credit of power to at least one of the plurality of real estate properties.
    • [0074]
      FIG. 27 depicts a fourth software flow block diagram 2700 for a computer readable media of distributing alternatively generated power to a real estate development that includes instructions for metering 2710 a credit of power delivered from a cooperative power farm to a power grid and sensing 2712 a power delivery to at least two real estate properties. Rights to a portion of the metered credit are included with ownership of at least one of the plurality of real estate properties. Further instructions are provided for determining 2714 the difference between the metered credit of power and the sensed power delivery to at least one of the plurality of real estate properties. The computer readable media also includes instructions for determining 2716 a cost of the determined difference if the use of the sensed power delivery to at least one of the plurality of real estate properties is greater than the metered credit of power from the cooperative power farm and determining 2718 a profit of the determined difference if the metered credit of power from the cooperative power farm is greater than the sensed power delivery to the at least one of the plurality of real estate properties.
    • [0075]
      The steps described in the embodiments above are preferably embodied in a computer readable medium or software but may also be embodied in firmware and are utilized via hardware. The transfer of information occurs via at least one of a wireless protocol, a wired protocol, and the combination of the wireless and wired protocols. The steps performed in FIGS. 24-27 are performed by software, hardware, firmware, and/or the combination of software, hardware, and/or firmware.
    • [0076]
      Although exemplary embodiments of the present invention have been illustrated in the accompanying drawings and described in the foregoing detailed description, it will be understood that the invention is not limited to any embodiment disclosed, but is capable of numerous rearrangements, modifications, and substitutions without departing from the spirit of the invention as set forth and defined by the following claims. For example, these capabilities may be performed in the current manner or in a distributed manner and on, or via, any device able to provide and/or receive information. Further, although various embodiments have been described in relation to electrical energy sources the systems can be used with other types of energy, such as natural gas, without departing from the scope of the appended claims. Further, although depicted in a particular manner, various modules or blocks may be repositioned without departing from the scope of the current invention. Still further, although depicted in a particular manner, a greater or lesser number of modules and connections can be utilized in order to accomplish the described system, to provide additional known features to the present embodiments, and/or to make the described system more efficient. Also, the information sent between various modules can be sent between the modules via at least one of a data network, the Internet, an Internet Protocol network, a wireless source, and a wired source, and via plurality of protocols.
    • [0077]
      From the foregoing, it can be seen that embodiments of the present invention comprise a system and method for distributing alternatively generated power to a real estate development. It will be appreciated by those skilled in the art that changes could be made to the embodiments described above without departing from the broad inventive concept thereof. It is understood, therefore, that this invention is not limited to the particular embodiments disclosed, but it is intended to cover modifications within the spirit and scope of the present invention as defined by the appended claims.
    Patent Citations
    Cited PatentFiling datePublication dateApplicantTitle
    US4568595 *Apr 26, 1984Feb 4, 1986Morris Jeffrey RCoated ceramic structure and method of making same
    US4575330 *Aug 8, 1984Mar 11, 1986Uvp, Inc.Apparatus for production of three-dimensional objects by stereolithography
    US5006937 *Jul 27, 1990Apr 9, 1991Canon Kabushiki KaishaImaging data processing apparatus
    US5185297 *Oct 28, 1991Feb 9, 1993Lanxide Technology Company, LpCeramic foams
    US5401694 *Oct 18, 1993Mar 28, 1995Lanxide Technology Company, LpProduction of metal carbide articles
    US5402514 *Jan 5, 1994Mar 28, 1995E. I. Du Pont De Nemours And CompanyOptical waveguide devices including dry photohardenable layers
    US6274288 *Jun 11, 1996Aug 14, 2001California Institute Of TechnologySelf-trapping and self-focusing of optical beams in photopolymers
    US6387593 *Nov 18, 1999May 14, 2002California Institute Of TechnologySelf-trapping and self-focusing of optical beams in photopolymers
    US6500401 *Mar 13, 2001Dec 31, 2002Cabot CorporationCarbon foams and methods of making the same
    US6512966 *Apr 23, 2001Jan 28, 2003Abb AbSystem, method and computer program product for enhancing commercial value of electrical power produced from a renewable energy power production facility
    US6592787 *Mar 7, 2001Jul 15, 2003Porvair CorporationPorous articles and method for the manufacture thereof
    US6631231 *Mar 16, 2001Oct 7, 2003Matsushita Electric Industrial Co., Ltd.Optical waveguide elements, optical wavelength conversion elements, and process for producing optical waveguide elements
    US6650817 *Oct 15, 2002Nov 18, 2003Intel CorporationMulti-level waveguide
    US6660192 *Aug 9, 2000Dec 9, 2003Harvard CollegeMolded waveguides
    US6670039 *Apr 6, 2000Dec 30, 2003Dennis C. NagleCarbonized wood and materials formed therefrom
    US6684007 *May 9, 2001Jan 27, 2004Fujitsu LimitedOptical coupling structures and the fabrication processes
    US6823116 *Aug 12, 2002Nov 23, 2004Toyoda Gosei Co., Ltd.Optical waveguide device manufacturing jig, method of manufacturing optical waveguide device by use of the same jig, and the same optical waveguide device
    US6862393 *Nov 8, 2002Mar 1, 2005Nozomi Photonics Co., Ltd.Optical waveguide element, manufacturing method for optical waveguide element, optical deflecting element, and optical switching element
    US6879757 *Dec 4, 2002Apr 12, 2005Phosistor Technologies, Inc.Connection between a waveguide array and a fiber array
    US6887809 *Aug 3, 2001May 3, 2005Fraunhofer-Gesellschaft Zur Foerderung Der Angewandten Forschung E.V.Open-celled silicon carbide foam ceramic and method for production thereof
    US6898362 *Jan 17, 2002May 24, 2005Micron Technology Inc.Three-dimensional photonic crystal waveguide structure and method
    US6925233 *Aug 18, 2004Aug 2, 2005Toyoda Gosei Co., Ltd.Optical waveguide device manufacturing jig, method of manufacturing optical waveguide device by use of the same jig, and the same optical waveguide device
    US6925361 *Oct 28, 2000Aug 2, 2005Orion Engineering Corp.Distributed energy neural network integration system
    US6932880 *Jun 11, 2002Aug 23, 2005Toyoda Gosei Co., Ltd.Method of manufacturing optical waveguide device
    US6952504 *Dec 21, 2001Oct 4, 2005Neophotonics CorporationThree dimensional engineering of planar optical structures
    US6993235 *Feb 18, 2005Jan 31, 2006Canon Kabushiki KaishaThree-dimensional periodic structure and functional element including the same
    US7006747 *Jan 17, 2003Feb 28, 20063M Innovative Properties CompanyOptical devices incorporating photo reactive polymers
    US7020374 *Feb 3, 2003Mar 28, 2006Freescale Semiconductor, Inc.Optical waveguide structure and method for fabricating the same
    US7024093 *Dec 2, 2003Apr 4, 2006Shipley Company, LlcMethods of forming waveguides and waveguides formed therefrom
    US7274975 *Jun 6, 2005Sep 25, 2007Gridpoint, Inc.Optimized energy management system
    US7343340 *May 9, 2002Mar 11, 2008Edward Scott JacksonSystem and method for distributing transformer capacity among transformer users
    US7382959 *Oct 13, 2006Jun 3, 2008Hrl Laboratories, LlcOptically oriented three-dimensional polymer microstructures
    US7391126 *Jun 30, 2006Jun 24, 2008General Electric CompanySystems and methods for an integrated electrical sub-system powered by wind energy
    US7406364 *Sep 12, 2002Jul 29, 2008Abb AbMethod and system to calculate a demand for energy
    US7809621 *Apr 25, 2007Oct 5, 2010Michael HerzigOn-premise renewable generation securitization
    US7890436 *Jan 12, 2007Feb 15, 2011Clean Power Finance, Inc.Billing and payment methods and systems enabling consumer premises equipment
    US8019445 *Oct 20, 2008Sep 13, 2011Intelligent Generation LlcMethod and apparatus for optimization of distributed generation
    US20030144864 *Jul 11, 2002Jul 31, 2003Mazzarella Joseph R.System and method for creating and operating an enhanced distributed energy network or virtual power plant
    US20040007879 *Apr 16, 2003Jan 15, 2004Frank RuggieriEnd point power production
    US20040021237 *Apr 9, 2003Feb 5, 2004Fuji Xerox Co., Ltd.Process for producing polymer optical waveguide
    US20040154252 *Jun 6, 2002Aug 12, 2004Sypeck David J.Multifunctional periodic cellular solids and the method of making same
    US20040200417 *May 3, 2004Oct 14, 2004Applied Materials, Inc.Very low temperature CVD process with independently variable conformality, stress and composition of the CVD layer
    US20040264863 *Aug 2, 2002Dec 30, 2004Kouichi SuzukiOptical coupler
    US20050135745 *Nov 15, 2004Jun 23, 2005Greiner Christoph M.Optical structures distributed among multiple optical waveguides
    US20050202206 *May 29, 2003Sep 15, 2005Wadley Haydn N.G.Method for manufacture of periodic cellular structure and resulting periodic cellular structure
    US20050255289 *Jul 23, 2003Nov 17, 2005Wadley Haydn NMethod for manufacture of cellular materials and structures for blast and impact mitigation and resulting structure
    US20050287696 *Jun 28, 2005Dec 29, 2005Patrick DumaisWaveguiding structures with embedded microchannels and method for fabrication thereof
    US20060029348 *Mar 28, 2005Feb 9, 2006Optinetrics, Inc.Optical waveguide structure
    US20060080835 *Feb 17, 2004Apr 20, 2006Kooistra Gregory WMethods for manufacture of multilayered multifunctional truss structures and related structures there from
    US20070219932 *Mar 14, 2007Sep 20, 2007Carroll Scott TCooperative energy farms and virtual net metering
    US20080091625 *Jan 12, 2007Apr 17, 2008Gary KremenBilling and payment methods and systems enabling consumer premises equipment
    US20080167931 *Jan 4, 2007Jul 10, 2008Richard Allen GerstemeierCommunity resource management systems and methods
    US20080177558 *Dec 18, 2007Jul 24, 2008Searete Llc, A Limited Liability Corporation Of The State Of DelawareResolution of virtual world revocable transfers
    US20080195563 *Feb 12, 2008Aug 14, 2008Christopher JamesSolar-to-electrical energy prospecting and commercializing
    US20080319895 *Mar 21, 2008Dec 25, 2008Lazerson Jeffrey MSystem for matching borrowers and lenders
    US20090055300 *Jul 15, 2008Feb 26, 2009Mcdowell GrantMethod and system for remote generation of renewable energy
    US20090157545 *Nov 19, 2008Jun 18, 2009Morgan StanleyFacilitating the ownership of solar-powered electricity-generating systems
    US20090210269 *Feb 19, 2008Aug 20, 2009Rovshan SadeMethod for Operating a Renewable Energy Power Generation Facility
    US20100287102 *May 6, 2009Nov 11, 2010Sutton Geoffrey Nicholas BarnardFacilitation of renewable energy delivery using floating power purchase agreements
    US20100293045 *May 14, 2010Nov 18, 2010James Moeller BurnsCentralized Renewable Energy System With Fractional Ownership and a Method of Disaggregated Net Metering of its Renewable Energy Output Among Utility Customers Who Are Fractional Owners
    US20110172841 *Mar 17, 2011Jul 14, 2011Forbes Jr Joseph WMethod and Apparatus for Actively Managing Consumption of Electric Power Supplied by One or More Electric Utilities
    US20120023039 *Apr 29, 2011Jan 26, 2012Clean Power Finance, Inc.System and method for tax-advantaged financing of residential renewable energy equipment
    US20120226592 *Mar 1, 2012Sep 6, 2012Flynn Michael PApproach For Producing And Managing Electricity
    US20130006831 *Mar 9, 2011Jan 3, 2013Panasonic CorporationElectric power supply system
    US20130085921 *Sep 29, 2011Apr 4, 2013Sony CorporationHome energy collaborative mesh platform
    US20130173360 *Dec 18, 2012Jul 4, 2013Robert ThatcherMethods of allocating benefits received in response to generating energy within communities to community interests
    US20130226763 *Feb 6, 2013Aug 29, 2013Clean Power Finance, Inc.Method and system for grouping and marketing consumer premises equipment loans
    Referenced by
    Citing PatentFiling datePublication dateApplicantTitle
    US8275489 *Jun 19, 2009Sep 25, 2012Devine Timothy JSystems and methods for deployment of wind turbines
    US20140195206 *Jan 6, 2014Jul 10, 2014Enphase Energy, Inc.Method and apparatus for managing installation information
    WO2011150406A1 *May 27, 2011Dec 1, 2011Christopher PawlikSystems and methods for developing and optimizing underutilized real property
    Classifications
    U.S. Classification700/297, 705/412
    International ClassificationG06Q50/00, G06Q30/00, G06F1/28, G06F1/26
    Cooperative ClassificationG05F1/66, G06Q10/06, G06Q50/163, Y04S50/12, G06Q50/06, G06Q40/12, G06Q30/04
    European ClassificationG06Q10/06, G06Q40/10, G06Q50/06, G06Q30/04
    Legal Events
    DateCodeEventDescription
    Mar 31, 2009ASAssignment
    Owner name: SHORE, MICHAEL W., TEXAS
    Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:DWORK, STUART DOUGLAS;REEL/FRAME:022472/0490
    Effective date: 20090310