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Self-adjusting recovery algorithm for a microprocessor-controlled setback thermostat

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06F-015/20
  • G05D-023/00
출원번호 US-0768150 (1991-09-30)
발명자 / 주소
  • Adams John T. (Minneapolis MN) Meyer Jeffrey R. (Minneapolis MN)
출원인 / 주소
  • Honeywell Inc. (Minneapolis MN 02)
인용정보 피인용 횟수 : 80  인용 특허 : 12

초록

A recovery algorithm for a setback thermostat uses the intersection of the space temperature with a sloped recovery temperature line which approximates the change in temperature as a function of time during recovery of the temperature controlled space from a setback temperature, to determine the tim

대표청구항

A setback thermostat including a temperature sensor providing a signal indicative of the ambient temperature, and a programmable digital processor including an operand memory having a plurality of data storage locations at least one of which contains an occupancy time value and an associated occupan

이 특허에 인용된 특허 (12)

  1. Adams John T. (Minneapolis MN), Adaptive control system.
  2. Levine Michael R. (2900 Heather Way Ann Arbor MI 48104), Adaptive electronic thermostat.
  3. Barnard, William B., Adaptive optimum start.
  4. Culp Charles H. (Vernon Hills IL), Adaptive optimum start/stop control system.
  5. Christiansen Jorn U. (Hvidovre DKX), Control unit for starting a climitization procedure in a building.
  6. Sahay Bharat B. (Johnson City TN) Jones James J. (Elizabethton TN), Electrically controlled programmable digital thermostat and method for regulating the operation of multistage heating an.
  7. Cabou Christian G. (Highland Park IL), Optimal start programmer.
  8. Tomlinson ; Colin Henry, Optimum start controller.
  9. Barnard William B. (Arlington Heights IL) Shavit Gideon (Highland Park IL) Wruck Richard A. (Mount Prospect IL), Optimum start/stop dependent upon both space temperature and outdoor air temperature.
  10. Bird Douglas D. (Dayton MN) Uhrich Daniel T. (Mayer MN), Setback thermostat with recovery start time selected non-linearly.
  11. Beckey Thomas J. (Edina MN) Kallas Kerry M. (Minneapolis MN) Uhrich Daniel T. (Mayer MN), Temperature control system using a single ramp rate curve for control of a multiplant environmental unit.
  12. Beckey Thomas J. (Edina MN), Thermostat means adaptively controlling the amount of overshoot or undershoot of space temperature.

이 특허를 인용한 특허 (80)

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  2. Moran, Ryan; Sakich, Mike, Cascading set point burner control system for paint spray booths.
  3. Amundson, John B.; Finch, Heidi J.; Vick, Brent D., Configurable thermostat for controlling HVAC system.
  4. Bergman, Gabriel A.; Takach, Eugene J.; Stoner, Marcus D.; Amundson, John B.; Readio, Philip O.; Schwendinger, Paul G.; Boll, Jeff D.; Thomson, Ian; Ferguson, Colin T.; Mcleod, George J.; Wolfbauer, James A., Controller interface with multiple day programming.
  5. Kasper, Gary P.; Smith, Gary A.; Wacker, Paul C., Controller with dynamic temperature compensation.
  6. Stoner, Marcus D.; Kolavennu, Soumitri; Paine, Brad; Goh, Christopher, Devices and methods for interacting with a control system that is connected to a network.
  7. Hartley, Jason Vance; Hamberg, Peder; Leingang, Karl David, Electronic thermostat.
  8. Leen, Cary; Zywicki, III, Stan; Schnell, Robert J., HVAC control with comfort/economy management.
  9. Leen, Cary; Zywicki, Stan; Schnell, Robert J., HVAC control with comfort/economy management.
  10. Amundson, John; Boll, Jeffrey; Erickson, Peter Joseph; Lunacek, Michael; Tessier, Patrick C., HVAC control with utility time of day pricing support.
  11. Amundson, John; Boll, Jeffrey; Erickson, Peter Joseph; Lunacek, Michael; Tessier, Patrick C., HVAC control with utility time of day pricing support.
  12. Peterson, Jeremy, HVAC control with utility time of day pricing support.
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  14. Boll, Jeffrey; Amundson, John; Erickson, Peter, HVAC controller having a parameter adjustment element with a qualitative indicator.
  15. Vozenilek, Jan; Pospisil, Jan; Leen, Cary, HVAC controller with multi-region display and guided setup.
  16. Rayburn,Ronald Richard, HVAC start-up control system and method.
  17. Demaline John Tracey,CAX ITX L7G 4S6, Hot water controller.
  18. Kishima Shuzo,JPX ; Ito Kiyoshi,JPX, Information processing apparatus using finite state machine.
  19. Bhattacharya, Shubho, Intelligent air conditioning system for a paint booth.
  20. Amundson, John B.; Finch, Heidi J.; Vick, Brent D., Interview programming for an HVAC controller.
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  22. Kim, Kyung-Jae, Method and apparatus for controlling temperature.
  23. Kim, Kyung-Jae, Method and apparatus for controlling temperature.
  24. Van Ostrand William F. (Indianapolis IN) Shah Rajendra K. (Indianapolis IN), Multi-staging of supplemental heat in climate control apparatus.
  25. Bohrer,Philip J.; Merten,Gregory J.; Schnell,Robert J.; Atlass,Michael B., Profile based method for deriving a temperature setpoint using a 'delta' based on cross-indexing a received price-point level signal.
  26. Bohrer, Philip J.; Merten, Gregory J.; Schnell, Robert J.; Atlass, Michael B., Profile based method for deriving a temperature setpoint using a `delta` based on cross-indexing a received price-point level signal.
  27. Bohrer, Philip J.; Merten, Gregory J.; Schnell, Robert J.; Atlass, Michael B., Profile based method for deriving a temperature setpoint using a ‘delta’ based on cross-indexing a received price-point level signal.
  28. Geadelmann, Levi H.; Moore, Kevin B.; Sullivan, Daniel J.; Ho, Geoffrey, Remote HVAC control with a customizable overview display.
  29. Harter, Robert J., Self-programmable thermostat.
  30. Harter, Robert J., Self-programmable thermostat.
  31. Schnell, Robert J.; Erickson, Peter Joseph; Lunacek, Michael, Setpoint recovery with utility time of day pricing.
  32. Kummerer, Christoph; Kummerer, Norbert, Smart control strategy for regulating a temperature controller.
  33. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for calculating the thermal mass of a building.
  34. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for calculating the thermal mass of a building.
  35. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for calculating the thermal mass of a building.
  36. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for evaluating changes in the efficiency of an HVAC system.
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  38. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for evaluating changes in the efficiency of an HVAC system.
  39. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for evaluating changes in the efficiency of an HVAC system.
  40. Hublou, Scott Douglas; Steinberg, John Douglas, System and method for optimizing use of individual HVAC units in multi-unit chiller-based systems.
  41. Steinberg, John Douglas, System and method for optimizing use of plug-in air conditioners and portable heaters.
  42. Steinberg, John Douglas, System and method for optimizing use of plug-in air conditioners and portable heaters.
  43. Steinberg, John Douglas, System and method for optimizing use of plug-in air conditioners and portable heaters.
  44. Steinberg, John Douglas, System and method for optimizing use of plug-in air conditioners and portable heaters.
  45. Steinberg, John Douglas, System and method for using a mobile electronic device to optimize an energy management system.
  46. Steinberg, John Douglas, System and method for using a mobile electronic device to optimize an energy management system.
  47. Steinberg, John Douglas, System and method for using a mobile electronic device to optimize an energy management system.
  48. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for using a network of thermostats as tool to verify peak demand reduction.
  49. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for using a network of thermostats as tool to verify peak demand reduction.
  50. Steinberg, John Douglas; Hublou, Scott Douglas, System and method for using a network of thermostats as tool to verify peak demand reduction.
  51. Steinberg, John Douglas, System and method for using a networked electronic device as an occupancy sensor for an energy management system.
  52. Steinberg, John Douglas, System and method for using a wireless device as a sensor for an energy management system.
  53. Cheung, Leo; Hublou, Scott Douglas; Steinberg, John Douglas, System and method for using ramped setpoint temperature variation with networked thermostats to improve efficiency.
  54. Cheung, Leo; Hublou, Scott Douglas; Steinberg, John Douglas, System and method for using ramped setpoint temperature variation with networked thermostats to improve efficiency.
  55. Cheung, Leo; Hublou, Scott Douglas; Steinberg, John Douglas, System and method for using ramped setpoint temperature variation with networked thermostats to improve efficiency.
  56. Aljabari, Mohammad A., System for determining ambient temperature.
  57. Aljabari, Mohammad A., System for determining ambient temperature.
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  64. Steinberg, John Douglas; Hublou, Scott Douglas; Cheung, Leo, System, method and apparatus for identifying manual inputs to and adaptive programming of a thermostat.
  65. Steinberg, John Douglas; Hublou, Scott Douglas; Cheung, Leo, System, method and apparatus for identifying manual inputs to and adaptive programming of a thermostat.
  66. Steinberg, John Douglas; Hublou, Scott Douglas; Cheung, Leo, System, method and apparatus for identifying manual inputs to and adaptive programming of a thermostat.
  67. Steinberg, John Douglas; Hublou, Scott Douglas; Cheung, Leo, System, method and apparatus for just-in-time conditioning using a thermostat.
  68. Steinberg, John Douglas, System, method and apparatus for use of dynamically variable compressor delay in thermostat to reduce energy consumption.
  69. Steinberg, John Douglas, System, method and apparatus for use of dynamically variable compressor delay in thermostat to reduce energy consumption.
  70. Seem, John E.; House, John M., Systems and methods for estimating a return time.
  71. Shetty, Pradeep; Foslien, Wendy; Curtner, Keith; Mangsuli, Prunaprajna R.; Kolavennu, Soumitri, Systems and methods for managing a programmable thermostat.
  72. Shetty, Pradeep; Foslien, Wendy; Curtner, Keith; Mangsuli, Purnaprajna R.; Kolavennu, Soumitri, Systems and methods for managing a programmable thermostat.
  73. Aljabari, Mohammad; Lunacek, Michael, Temperature compensation system for an electronic device.
  74. Herzon, Aaron D.; Reifel, Allan J., Temperature control in variable-capacity HVAC system.
  75. Crimins, Jonathan; Ruffner, Scott; Minich, Allen; Hester, Todd; Sahl, Amanda, Thermostat algorithms and architecture for efficient operation at low temperatures.
  76. Tessier, Patrick C.; Hartzler, Jeffrey S., Wireless controller with gateway.
  77. Tessier, Patrick C.; Hartzler, Jeffrey S., Wireless controller with gateway.
  78. Tessier, Patrick; Hartzler, Jeffrey, Wireless controller with gateway.
  79. Tessier, Patrick; Hartzler, Jeffrey, Wireless controller with gateway.
  80. Tessier, Patrick; Hartzler, Jeffrey, Wireless controller with gateway.
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