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Thermodynamic modeling for enclosures 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G05B-011/01
출원번호 US-0881463 (2010-09-14)
등록번호 US-8606374 (2013-12-10)
발명자 / 주소
  • Fadell, Anthony Michael
  • Rogers, Matthew Lee
  • Rogers, Kipp Avery
  • Ishihara, Abraham K.
  • Ben-Menahem, Shahar
  • Sharan, Rangoli
출원인 / 주소
  • Nest Labs, Inc.
대리인 / 주소
    Kilpatrick Townsend & Stockton LLP
인용정보 피인용 횟수 : 20  인용 특허 : 29

초록

Systems and methods for modeling the behavior of an enclosure for use by a control system of an HVAC system are described. A model for the enclosure that describes the behavior of the enclosure for use by the control system is updated based on a weather forecast data. The weather forecast data can i

대표청구항

1. A method for modeling internal environmental behavior of an enclosure for use by a control system of an HVAC system installed in the enclosure comprising: creating, over time, an occupancy model of the enclosure capable of predicting when there will be no occupants in the enclosure;determining an

이 특허에 인용된 특허 (29)

  1. Dewolf Thomas L. (8139 Portobello Way Liverpool NY 13090) Phillips Thomas R. (6108 Gaspe La. Cicero NY 13041) Bench Ronald W. (8535 Farmgate Path Cicero NY 13041), Active anticipatory control.
  2. Cler Lawrence J. (Broomfield CO), Adaptive environment control system.
  3. Levine Michael R. (Ann Arbor MI), Analog to digital conversion employing the system clock of a microprocessor, the clock frequency varying with analog inp.
  4. Riley Joseph D. (Las Vegas NV) Popek Marc H. (Las Vegas NV), Apparatus and method for automatic climate control.
  5. Ahmed, Osman, Application of microsystems for comfort control.
  6. Hoglund, Steven R.; Tessier, Patrick C.; Leen, Cary; Kidder, Kenneth B., Auxiliary stage control of multistage thermostats.
  7. Berglund Ulf Stefan,SEX ; Lundberg Bjorn Henry,SEX, Comfort control system incorporating weather forecast data and a method for operating such a system.
  8. De Milleville Hugues,CAX ITX L0G 1L0, Control apparatus and method for maximizing energy saving in operation of HVAC equipment and the like.
  9. Seymour Richard L. (1218 Temple City Blvd. #9 Arcadia CA 91007), Easy-to-install thermostatic control system based on room occupancy.
  10. Levine Michael R. (Ann Arbor MI) Russo James T. (Ann Arbor MI) Rigotti Victor H. (Ann Arbor MI), Electronic programmable thermostat.
  11. Levine Michael R. (2900 Heatherway Ann Arbor MI 48104), Electronic thermostat with repetitive operation cycle.
  12. Michael Lee Simmons ; Dominick J. Gibino, Energy-saving occupancy-controlled heating ventilating and air-conditioning systems for timing and cycling energy within different rooms of buildings having central power units.
  13. Ehlers Gregory A. ; Silva Richard M., Environmental condition control and energy management system and method.
  14. Williams Christopher D. ; Goldschmidt Iti Jean M. ; Shah-Nazaroff Anthony A. ; Watts E. Michael ; Moore Kenneth Alan ; Hackson David N., Method and apparatus for automatically configuring a system based on a user's monitored system interaction and preferre.
  15. Gauthier Dale A. ; Covert Guy D., Method and apparatus for energy recovery in an environmental control system.
  16. Salsbury,Timothy I.; Singhal,Ashish, Method of and apparatus for evaluating the performance of a control system.
  17. D'Souza Melanius, Process and apparatus for energy conservation in buildings using a computer controlled ventilation system.
  18. Bell Ian (111 Granton Drive ; Unit 409 Richmond ; Ontario CAX L4B 1L5), Self-programmable temperature control system for a heating and cooling system.
  19. Harter, Robert J., Self-programmable thermostat.
  20. Szarka Jay R. (11 Orchard St. Milford NH 03055), Sound activated temperature control system.
  21. Gutta, Srinivas; Trajkovic, Miroslav; Colmanarez, Antonio Jose, Space-conditioning control employing image-based detection of occupancy and use.
  22. Chapman, Jr.,John Gilman; Ashworth,Nicholas; Burt,Robert; Wallaert,Timothy E.; Rao,Joseph P., System and method for controlling appliances and thermostat for use therewith.
  23. Steinberg, John Douglas, System and method for optimizing use of plug-in air conditioners and portable heaters.
  24. Wagner, Phillip Ryan; Chapman, Jr., John Gilman, System and method for switching-over between heating and cooling modes.
  25. Adams John T. (Minneapolis MN), Thermostat control.
  26. Simon, Timothy M.; Smith, Blaine M.; Fisher, Matthew T., Thermostat operation method and apparatus.
  27. Shah Dipak J. (Eden Prairie MN), Thermostat system having an optimized temperature recovery ramp rate.
  28. Rosen,Howard, Thermostat system with remote data averaging.
  29. Uhrich Daniel T. (Mayer MN), Thermostat with selectable temperature sensor inputs.

이 특허를 인용한 특허 (20)

  1. Strelec, Martin; Marik, Karel, Determining a heating, ventilation, and air conditioning model for a building.
  2. Matsuoka, Yoky; Stefanski, Mark D.; Sloo, David, Enclosure cooling using early compressor turn-off with extended fan operation.
  3. Warren, Daniel Adam; Fiennes, Hugo; Dutra, Jonathan Alan; Bell, David; Fadell, Anthony Michael; Rogers, Matthew Lee; Smith, Ian C.; Satterthwaite, Jr., Edwin H.; Palmer, Joseph E.; Erickson, Grant M.; Mucignat, Andrea; Sloo, David, Installation of thermostat powered by rechargeable battery.
  4. Bisson, Reed; Amundson, John B., Method for controlling an HVAC system using a proximity aware mobile device.
  5. Mighdoll, Lee; Fadell, Anthony Michael; Steele, Oliver W., Methods, systems, and related architectures for managing network connected devices.
  6. Lehman, Bret W., Optimizing free cooling of data centers through weather-based intelligent control.
  7. Warren, Daniel Adam; Fiennes, Hugo; Dutra, Jonathan Alan; Bell, David; Fadell, Anthony Michael; Rogers, Matthew Lee; Smith, Ian C.; Satterthwaite, Edwin H.; Palmer, Joseph E.; Erickson, Grant M.; Mucignat, Andrea, Power management in energy buffered building control unit.
  8. Fadell, Anthony M.; Rogers, Matthew L.; Sloo, David; Plitkins, Michael; Honjo, Shigefumi; Filson, John B.; Matas, Michael J.; Bould, Fred; Huppi, Brian, Round thermostat with flanged rotatable user input member and wall-facing optical sensor that senses rotation.
  9. Parthasarathy, Girija; Foslien, Wendy; Davalos, Pedro, System for obtaining and classifying energy characteristics.
  10. Sloo, David; Fadell, Anthony Michael; Rogers, Matthew Lee; Plitkins, Michael; Matas, Michael James; Hales, IV, Steven A., Systems and methods for a graphical user interface of a controller for an energy-consuming system having spatially related discrete display elements.
  11. Shetty, Pradeep; Foslien, Wendy; Curtner, Keith; Mangsuli, Prunaprajna R.; Kolavennu, Soumitri, Systems and methods for managing a programmable thermostat.
  12. Shetty, Pradeep; Foslien, Wendy; Curtner, Keith; Mangsuli, Purnaprajna R.; Kolavennu, Soumitri, Systems and methods for managing a programmable thermostat.
  13. Fadell, Anthony Michael; Sloo, David; Rogers, Matthew; Sharan, Rangoli; Matas, Michael; Matsuoka, Yoky, Temperature controller with model-based time to target calculation and display.
  14. Fadell, Anthony Michael; Rogers, Matthew Lee; Rogers, Kipp Avery; Ishihara, Abraham K.; Ben-Menahem, Shahar; Sharan, Rangoli, Thermodynamic modeling for enclosures.
  15. Fadell, Anthony M.; Rogers, Matthew L.; Sloo, David; Matas, Michael J.; Plitkins, Michael, Thermostat user interface.
  16. Fadell, Anthony M.; Rogers, Matthew L.; Sloo, David; Plitkins, Michael; Honjo, Shigefumi; Filson, John B.; Matas, Michael J.; Bould, Fred; Huppi, Brian, Thermostat user interface.
  17. Fadell, Anthony Michael; Rogers, Matthew Lee; Sloo, David; Matas, Michael James; Plitkins, Michael, Thermostat user interface.
  18. Fadell, Anthony Michael; Rogers, Matthew Lee; Sloo, David; Matas, Michael James; Plitkins, Michael, Thermostat user interface.
  19. Fadell, Anthony; Rogers, Matthew; Sloo, David; Plitkins, Michael; Honjo, Shigefumi; Filson, John; Matas, Michael; Bould, Fred; Huppi, Brian, Thermostat user interface.
  20. Warren, Daniel Adam; Satterthwaite, Jr., Edwin H.; Smith, Ian C., Thermostat with power stealing delay interval at transitions between power stealing states.
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