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Methods and systems for energy and emissions monitoring 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G05B-021/00
출원번호 US-0682991 (2001-11-06)
발명자 / 주소
  • Bagepalli, Srinivas Krishnasnamy
  • DeRose, Lynn Ann
  • Hung, Stephen Lan-Sun
  • Kim, Bang Mo
  • Wight, Tara Healy
  • Salvo, Joseph James
출원인 / 주소
  • General Electric Company
대리인 / 주소
    Freedman, Phillip D.
인용정보 피인용 횟수 : 115  인용 특허 : 4

초록

Methods, systems, and processes are disclosed for determining emissions outputs. One method communicates with a communications network and acquires at least one of energy usage information associated with sources of emissions and emissions information associated with sources of emissions. The energy

대표청구항

Methods, systems, and processes are disclosed for determining emissions outputs. One method communicates with a communications network and acquires at least one of energy usage information associated with sources of emissions and emissions information associated with sources of emissions. The energy

이 특허에 인용된 특허 (4)

  1. Ausubel Lawrence M., Computer implemented methods and apparatus for auctions.
  2. Mandel Stephen ; Sobel Richard A., Emission monitoring system.
  3. Lang, Fred D., Input/loss method for determining fuel flow, chemistry, heating value and performance of a fossil-fired system.
  4. Anthony T. Sziklai ; Ashish K. Verma ; Judith E. Popowski ; Richard Frankland ; Christopher M. Mitchell ; Joseph D. Ferguson ; Douglas H. Sturgeon, Integrated change management unit.

이 특허를 인용한 특허 (115)

  1. Baldrey, Kenneth E.; Sjostrom, Sharon; French, Nina Bergan; Durham, Michael D., Additives for mercury oxidation in coal-fired power plants.
  2. Baldrey, Kenneth E.; Sjostrom, Sharon; French, Nina Bergan; Durham, Michael D., Additives for mercury oxidation in coal-fired power plants.
  3. Dillon, Martin A.; Filippelli, Gregory M., Air treatment process for dilute phase injection of dry alkaline materials.
  4. Dillon, Martin A.; Filippelli, Gregory M., Air treatment process for dilute phase injection of dry alkaline materials.
  5. Forbes, Jr., Joseph W.; Webb, Joel L.; Long, John O. F., Apparatus and method for controlling communications to and from fixed position communication devices over a fixed bandwidth communication link.
  6. Forbes, Jr., Joseph W.; Webb, Joel L.; Long, John O. F., Apparatus and method for controlling communications to and from utility service points.
  7. Mercer, Tom; Orfei, Alessandro; Boonin, Elisabeth, Behavioral demand response dispatch.
  8. Amsterdam, Jeffrey D.; Hamilton, II, Rick A.; O'Connell, Brian M.; Pickover, Clifford A.; Walker, Keith R., Calculating and communicating level of carbon offsetting required to compensate for performing a computing task.
  9. Amsterdam, Jeffrey D.; Hamilton, II, Rick A.; O'Connell, Brian M.; Pickover, Clifford A.; Walker, Keith R., Calculating and communicating level of carbon offsetting required to compensate for performing a computing task.
  10. Packer, Benjamin; Shilts, Erik; Raju, Madhanmohan; Musick, Natalie, Classification engine for classifying businesses based on power consumption.
  11. Packer, Benjamin; Shilts, Erik; Raju, Madhanmohan; Musick, Natalie, Classification engine for identifying business hours.
  12. Sjostrom, Sharon; Baldrey, Kenneth E.; Senior, Constance, Control of wet scrubber oxidation inhibitor and byproduct recovery.
  13. Sjostrom, Sharon; Baldrey, Kenneth E.; Senior, Constance, Control of wet scrubber oxidation inhibitor and byproduct recovery.
  14. Sjostrom, Sharon; Baldrey, Kenneth E.; Senior, Constance, Control of wet scrubber oxidation inhibitor and byproduct recovery.
  15. Sjostrom, Sharon; Baldrey, Kenneth E.; Senior, Constance, Control of wet scrubber oxidation inhibitor and byproduct recovery.
  16. Byron, David; Aji, Sudarshan Mandayam; Loftus, Thom; Peters, Edward L.; Yu, Janet, Demand response device configured to provide comparative consumption information relating to proximate users or consumers.
  17. Kaufman, Philip John; Walker, Marcia Elaine; Lombardi, Steven Anthony, Discrete energy assignments for manufacturing specifications.
  18. Kaufman, Philip John; Walker, Marcia Elaine, Discrete resource management.
  19. Walker, Marcia Elaine; Kaufman, Philip John, Dynamic sustainability search engine.
  20. Cybulski, Michael, Emission monitoring methods and systems.
  21. Dasgupta, Arjun; Preston, Brian; Philipsen, Niklas; Davidson, Euan; Culp, Jared; Greenfield, Matt, Energy audit device.
  22. Packer, Benjamin; Fonts, Agustin, Energy usage alerts for a climate control device.
  23. Kaufman, Philip John, Energy usage auto-baseline for diagnostics and prognostics.
  24. Keller, Michael R.; Vasko, David A.; Kaufman, Philip J.; Brandt, David D., Extensible energy management architecture.
  25. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E., Hot-side method and system.
  26. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E., Hot-side method and system.
  27. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E., Hot-side method and system.
  28. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E., Hot-side method and system.
  29. Fischer, Barry; Harack, Benjamin David, Identifying electric vehicle owners.
  30. Pai, Ramdas M.; Vasko, David A.; Brandt, David D.; Morgan, Richard A.; Siegler, David W.; Sustaeta, Angel, Industrial control energy object.
  31. Kaufman, Philip John, Inferred energy usage and multiple levels of energy usage.
  32. Frank, Ilan; McCool, Daniel; Darci, Tom, Location-based approaches for controlling an energy consuming device.
  33. Forbes, Jr., Joseph W., Method and apparatus for actively managing consumption of electric power over an electric power grid.
  34. Forbes, Jr., Joseph W.; Webb, Joel L., Method and apparatus for actively managing consumption of electric power supplied by an electric utility.
  35. Forbes, Jr., Joseph W.; Webb, Joel L., Method and apparatus for actively managing consumption of electric power supplied by an electric utility.
  36. Forbes, Jr., Joseph W., Method and apparatus for actively managing consumption of electric power supplied by one or more electric utilities.
  37. Forbes, Jr., Joseph W.; Webb, Joel L., Method and apparatus for actively managing consumption of electric power supplied by one or more electric utilities.
  38. Forbes, Jr., Joseph W.; Webb, Joel L., Method and apparatus for actively managing consumption of electric power supplied by one or more electric utilities.
  39. Forbes, Jr., Joseph W., Method and apparatus for actively managing electric power over an electric power grid.
  40. Forbes, Jr., Joseph W., Method and apparatus for actively managing electric power over an electric power grid.
  41. Forbes, Jr., Joseph W., Method and apparatus for actively managing electric power supply for an electric power grid.
  42. Forbes, Jr., Joseph W.; Webb, Joel L., Method and apparatus for effecting controlled restart of electrical servcie with a utility service area.
  43. Edwards, Timothy Alwynn, Method and apparatus for energy and emission reduction.
  44. Gallagher, Shawn; Goes, Ryan John, Method and system for controlling engine performance.
  45. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E., Method and system for controlling mercury emissions from coal-fired thermal processes.
  46. Durham, Michael D.; Sjostrom, Sharon; Baldrey, Kenneth E.; French, Nina Bergan; Bisque, Ramon, Method and system for controlling mercury emissions from coal-fired thermal processes.
  47. Durham, Michael; French, Nina Bergan; Bisque, Ramon E.; Baldrey, Kenneth E., Method and system for controlling mercury emissions from coal-fired thermal processes.
  48. Sjostrom, Sharon; Senior, Connie; Lagarenne, Jon, Method and system for controlling mercury emissions from coal-fired thermal processes.
  49. Sjostrom, Sharon; Senior, Connie; Lagarenne, Jon; Baldrey, Kenneth E.; Bisque, Ramon; Durham, Michael D.; French, Nina Bergan, Method and system for controlling mercury emissions from coal-fired thermal processes.
  50. Trout, Billy L.; Broadfoot, Robert; Jones, Richard B.; Hileman, Michael, Method and system for greenhouse gas emissions performance assessment and allocation.
  51. Ramagem, Daniel Bloomfield; Yeshua, Oren Benjamin; Hsiung, Crystal; Spradlin, Justin; Lin, Wayne, Method and system to control thermostat using biofeedback.
  52. Swanson, Brian G., Method for generating a model representative of a process.
  53. Devenish, Ryan; Porter, Monifa; Kimm, Chris; Curry, Robert Aaron; Cousins, Seth, Method for saving energy efficient setpoints.
  54. Curtis, Richard Tyler, Method to identify heating and cooling system power-demand.
  55. Comrie, Douglas C, Methods of operating a coal burning facility.
  56. Kaufman, Philip J., Multi-core processor for performing energy-related operations in an industrial automation system using energy information determined with an organizational model of the industrial automation system.
  57. Swanson,Brian G., Predictive emissions monitoring method.
  58. Swanson, Brian G., Predictive emissions monitoring system and method.
  59. Swanson, Brian G., Predictive emissions monitoring using a statistical hybrid model.
  60. Dillon, Martin A.; Filippelli, Gregory M., Process for dilute phase injection of dry alkaline materials.
  61. Kaufman, Philip John; Walker, Marcia Elaine, Process simulation utilizing component-specific consumption data.
  62. Martin, Cameron E., Process to enhance mixing of dry sorbents and flue gas for air pollution control.
  63. Walker, Marcia Elaine; Kaufman, Philip John, Product lifecycle sustainability score tracking and indicia.
  64. Royer, David; Yu, Suelyn; Morabito, Kerri, Providing an energy target for high energy users.
  65. Fonts, Agustin; Devenish, Ryan; Byron, David; Darci, Thomas E., Providing demand response participation.
  66. Devenish, Ryan; McCool, Daniel; Darci, Thomas E.; Niewmierzycki, Ralph; Miyachi, Mari, Providing set point comparison.
  67. Kaufman, Philip John, Quantifying operating strategy energy usage.
  68. Kaufman, Philip John; Walker, Marcia Elaine, Real time energy consumption analysis and reporting.
  69. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  70. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  71. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  72. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  73. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  74. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  75. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  76. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  77. Comrie, Douglas C., Reducing mercury emissions from the burning of coal.
  78. Comrie, Douglas C.; Vellella, Vincent A., Reducing sulfur gas emissions resulting from the burning of carbonaceous fuels.
  79. Comrie, Douglas C.; Vellella, Vincent A., Reducing sulfur gas emissions resulting from the burning of carbonaceous fuels.
  80. Shilts, Erik; Fonts, Agustin, Selecting participants in a resource conservation program.
  81. Comrie, Douglas C., Sorbents for coal combustion.
  82. Comrie, Douglas C., Sorbents for coal combustion.
  83. Comrie, Douglas C., Sorbents for coal combustion.
  84. Comrie, Douglas C., Sorbents for coal combustion.
  85. Comrie, Douglas C., Sorbents for coal combustion.
  86. Hanson, Ronald D.; Martin, Cameron E.; Wewer, Robert W.; Boerema, Randall J.; Derritt, Tyler J.; McCann, Nicole M., System and method for dense phase sorbent injection.
  87. Forbes, Jr., Joseph W.; Webb, Joel L., System and method for determining and utilizing customer energy profiles for load control for individual structures, devices, and aggregation of same.
  88. Hileman,Michael J.; Broadfoot,Robert; Jones,Richard B., System and method for determining equivalency factors for use in comparative performance analysis of industrial facilities.
  89. Packer, Ben; Fonts, Agustin; Shilts, Erik; Chung, Garner; Curtis, Richard Tyler, System and method for determining occupancy schedule for controlling a thermostat.
  90. Forbes, Jr., Joseph W., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  91. Forbes, Jr., Joseph W., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  92. Forbes, Jr., Joseph W., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  93. Forbes, Jr., Joseph W., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  94. Forbes, Jr., Joseph W.; Webb, Joel L., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  95. Forbes, Jr., Joseph W.; Webb, Joel L., System and method for estimating and providing dispatchable operating reserve energy capacity through use of active load management.
  96. Forbes, Jr., Joseph W., System and method for generating and providing dispatchable operating reserve energy capacity through use of active load management.
  97. Forbes, Jr., Joseph W.; Webb, Joel L., System and method for managing consumption of power supplied by an electric utility.
  98. Forbes, Jr., Joseph W.; Webb, Joel L.; Moore, Roy, System and method for manipulating controlled energy using devices to manage customer bills.
  99. Forbes, Jr., Joseph W.; Webb, Joel L., System and method for priority delivery of load management messages on IP-based networks.
  100. King, Christopher Slaboszewicz, System and method for providing utility consumption as shown on periodic utility bills and associated carbon emissions.
  101. Forbes, Jr., Joseph W.; Webb, Joel L.; Moore, Roy; Shaw, David, System and method for selective disconnection of electrical service to end customers.
  102. Forbes, Jr., Joseph W, System, method, and apparatus for actively managing consumption of electric power supplied by one or more electric power grid operators.
  103. Forbes, Jr., Joseph W., System, method, and apparatus for electric power grid and network management of grid elements.
  104. Forbes, Jr., Joseph W., System, method, and apparatus for electric power grid and network management of grid elements.
  105. Forbes, Jr., Joseph W., System, method, and apparatus for settlement for participation in an electric power grid.
  106. Kaufman, Philip J., Systems and methods for controlling assets using energy information determined with an organizational model of an industrial automation system.
  107. Forbes, Jr., Joseph W., Systems and methods for determining and utilizing customer energy profiles for load control for individual structures, devices, and aggregation of same.
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  109. Forbes, Jr., Joseph W., Systems and methods for determining and utilizing customer energy profiles for load control for individual structures, devices, and aggregation of same.
  110. Kaufman, Philip J., Systems and methods for determining energy information using an organizational model of an industrial automation system.
  111. Shilts, Erik; Ben-Meshulam, Jonathan Z.; Curtis, Richard Tyler, Thermostat classification method and system.
  112. Frank, Ilan; McCool, Daniel; Darci, Tom, Thermostat eco-mode.
  113. Shilts, Erik; Ben-Meshulam, Yoni; Packer, Ben; Curtis, Richard Tyler, Thermostat set point identification.
  114. Curtis, Richard Tyler, Unusual usage alerts.
  115. Lin, Wayne; Rosen, Deena; Royer, David, User segmentation to provide motivation to perform a resource saving tip.
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