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CAN communication for building automation systems 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G05B-015/00
출원번호 US-0305793 (2005-12-16)
등록번호 US-7433740 (2008-10-07)
발명자 / 주소
  • Hesse,Scott
  • Ogawa,Craig
  • Kiwimagi,Gary
  • Files,Craig
출원인 / 주소
  • Colorado vNet, LLC
대리인 / 주소
    Scull,Peter B.
인용정보 피인용 횟수 : 72  인용 특허 : 29

초록

Systems and methods for implementing CAN communication for building automation systems are disclosed. An exemplary system may comprise at least one sending device linked to a plurality of receiving devices over a CAN automation network. A control frame may be broadcast over the CAN automation networ

대표청구항

The invention claimed is: 1. A building automation system comprising: at least one sending device linked to a plurality of receiving devices over a CAN automation network; a control frame broadcast over the CAN automation network by the at least one sending device, the control frame encapsulated in

이 특허에 인용된 특허 (29)

  1. Combs,Richard; Flugel,Walter, Automated building service broker.
  2. Stringham, Gary G., Breaking up a bus to determine the connection topology and dynamic addressing.
  3. Barrenscheen Jens,DEX ; Fenzl Gunther,DEX ; Vowe Achim,DEX, Bridge module.
  4. Lingemann, Ronald R., Building automation system.
  5. Siu Raymond S. (Lindenhurst IL) Mueller Robert P. (Hillside IL) Racke Thomas F. (Deerfield IL), Building automation system having expansion modules.
  6. Weiss Heinz,DEX, Computer/bus message system for vehicle drive control system.
  7. Joachim Eisenmann DE; Martin Huber DE; Philipp Lanches DE; Hans-Juergen Aminger DE; Matthias Koehn DE, Data-processing-aided electronic control system for a motor vehicle.
  8. Hesse,Scott; Kiwimagi,Gary; Ogawa,Craig, Distributed control systems and methods.
  9. Bodmer James,CHX ; Pfeiffer Walter Karl,DEX, Home and building automation system.
  10. Humphries L. Scott (Naples FL) Rasmussen Glenn (Naples FL) Voita Douglas L. (Naples FL) Pritchett James D. (Naples FL), Home automation system.
  11. Mun Yong-Soon (Euiwang KRX), Home automation system having user controlled definition function.
  12. Humpleman Richard, Home multimedia network architecture.
  13. Bryans Darryl J. ; Jump Lance B., Lighting control subsystem for use in system architecture for automated building.
  14. Shteyn Yevgeniy Eugene, Method and apparatus for a low data-rate network to be represented on and controllable by high data-rate home audio/video interoperability (HAVi) network.
  15. Smith Marjorie L. ; Smith Mark E. ; Gelling Richard R. ; Cogbill Michael L., Method and apparatus for improved building automation.
  16. Notohamiprodjo Hubertus (Union City CA) Kukiatsakulchai Kata (San Fancisco CA), Method and apparatus for interfacing a light dimming control with an automated control system.
  17. Bird, David G., Method and system to connect internet protocol hosts via an application specific bus.
  18. Dittmar Ewald,DEX ; Kochs Hans-Dieter,DEX ; Hilmer Holger,DEX, Method for fault-tolerant communication under strictly real-time conditions.
  19. Ziegler ; Jr. Eldon W. (Columbia MD), Method of logical operations in home automation.
  20. Bertsch Ludo Arden,CAX ITX V8R 3Y5, Programmable distributed appliance control system.
  21. McFarland,Norman R., Self-healing control network for building automation systems.
  22. Parker,Phil A., Service panel with utility controller.
  23. Nadolski Gregory L. (Brookfield WI) Satula Keith O. (New Berlin WI), System and Method for assigning addresses to I/O devices in a control network and for verifying the assigned address of.
  24. Wesby,Philip Bernard, System and method for monitoring and control of wireless modules linked to assets.
  25. Petite, Thomas D., System and method for monitoring and controlling remote devices.
  26. Petite,Thomas D.; Huff,Richard M., System and method for monitoring and controlling remote devices.
  27. Thomas D. Petite ; Richard M. Huff, System and method for monitoring and controlling remote devices.
  28. Ehlers Gregory A. (Tampa FL) Howerton Robert D. (Decatur GA) Speegle Gary E. (Decatur GA), System for rate-related control of electrical loads.
  29. Petite,Thomas D., Wireless communication networks for providing remote monitoring of devices.

이 특허를 인용한 특허 (72)

  1. McCoy, Sean M.; Sun, Weiwei; Eiynk, Benedict J., Active device management for use in a building automation system.
  2. Curry, Jimmie; Jennings, Jacob; Grohman, Wojciech, Alarm and diagnostics system and method for a distributed architecture heating, ventilation and air conditioning network.
  3. Grohman, Wojciech; Filbeck, Amanda, Alarm and diagnostics system and method for a distributed architecture heating, ventilation and air conditioning network.
  4. Hadzidedic, Darko; Wallaert, Timothy E.; Powell, Joe, Alarm and diagnostics system and method for a distributed architecture heating, ventilation and air conditioning network.
  5. Wallaert, Timothy E., Alarm and diagnostics system and method for a distributed architecture heating, ventilation and conditioning network.
  6. Grohman, Wojciech, Alarm and diagnostics system and method for a distributed-architecture heating, ventilation and air conditioning network.
  7. Grohman, Wojciech; Hadzidedic, Darko; Filbeck, Amanda; Wallaert, Timothy E., Alarm and diagnostics system and method for a distributed-architecture heating, ventilation and air conditioning network.
  8. Grohman, Wojciech; Hadzidedic, Darko; Filbeck, Amanda; Wallaert, Timothy E.; Thorson, Timothy H.; Pavlak, Thomas Gerard; Jennings, Jacob, Alarm and diagnostics system and method for a distributed-architecture heating, ventilation and air conditioning network.
  9. Uden, Dave, Automated air source and VAV box association.
  10. Uden, David J., Automated air source and VAV box association.
  11. Kowald, Glenn Will; Hadzidedic, Darko, Auxiliary controller of a HVAC system.
  12. Grohman, Wojciech; Hadzidedic, Darko, Backup and restoration of operation control data in a heating, ventilation and air conditioning network.
  13. McCoy, Sean M.; Richards, David M.; Eiynk, Benedict; Mairs, Susan M., Building automation system data management.
  14. McCoy, Sean M.; Richards, David M.; Eiynk, Benedict; Mairs, Susan M., Building automation system data management.
  15. McCoy, Sean M.; Richards, David M., Building automation system date management.
  16. Mairs, Susan M.; McCoy, Sean M.; Richards, David M.; Eiynk, Benedict; Seewald, Jeffrey S.; Brink, James; McConnell, Deborah A.; Demulling, Delight; Kistler-Robinson, Judy K, Building automation system facilitating user customization.
  17. Mairs, Susan M.; McCoy, Sean M.; Richards, David M.; Eiynk, Benedict; Seewald, Jeffrey S.; Brink, James; McConnell, Deborah A.; Demulling, Delight; Kistler-Robinson, Judy K., Building automation system facilitating user customization.
  18. Hesse, Scott; Ogawa, Craig; Kiwimagi, Gary; Files, Craig, CAN communication for building automation system.
  19. Grohman, Wojciech, Communication protocol system and method for a distributed architecture heating, ventilation and air conditioning network.
  20. Grohman, Wojciech, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  21. Grohman, Wojciech, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  22. Grohman, Wojciech, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  23. Grohman, Wojciech, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  24. Grohman, Wojciech; Filbeck, Amanda, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  25. Grohman, Wojciech; Hadzidedic, Darko, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  26. Grohman, Wojciech; Hadzidedic, Darko; Sullivan, Daniel, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  27. Wallaert, Timothy E.; Grohman, Wojciech, Communication protocol system and method for a distributed-architecture heating, ventilation and air conditioning network.
  28. Grohman, Wojciech; Filbeck, Amanda, Device abstraction system and method for a distributed architecture heating, ventilation and air conditioning system.
  29. Hadzidedic, Darko; Grohman, Wojciech, Device abstraction system and method for a distributed architecture heating, ventilation and air conditioning system.
  30. Grohman, Wojciech, Device abstraction system and method for a distributed-architecture heating, ventilation and air conditioning system.
  31. Grohman, Wojciech, Device abstraction system and method for a distributed-architecture heating, ventilation and air conditioning system.
  32. Grohman, Wojciech; Hadzidedic, Darko, Device abstraction system and method for a distributed-architecture heating, ventilation and air conditioning system.
  33. Grohman, Wojciech; Jennings, Jacob; Filbeck, Amanda, Device abstraction system and method for a distributed-architecture heating, ventilation and air conditioning system.
  34. Hadzidedic, Darko, Device commissioning in a heating, ventilation and air conditioning network.
  35. Hadzidedic, Darko, Device commissioning in a heating, ventilation and air conditioning network.
  36. Richards, David M.; McCoy, Sean M, Dynamically extensible and automatically configurable building automation system and architecture.
  37. Richards, David M.; McCoy, Sean M., Dynamically extensible and automatically configurable building automation system and architecture.
  38. Wallaert, Timothy; Thorson, Timothy H.; Pavlak, Thomas G., Flush wall mount thermostat and in-set mounting plate for a heating, ventilation and air conditioning system.
  39. Grohman, Wojciech; Hadzidedic, Darko; Thorson, Timothy H.; Mirza, Muhammad Ali; Kailani, Ammar; Wallaert, Timothy E., General control techniques in a heating, ventilation and air conditioning network.
  40. Kowald, Glenn Will; Hadzidedic, Darko, Heating, ventilating and air conditioning (HVAC) system with an auxiliary controller.
  41. Kowald, Glenn Will; Hadzidedic, Darko, Integrated controller an HVAC system.
  42. Grohman, Wojciech; Hadzidedic, Darko, Interactive user guidance interface for a heating, ventilation and air conditioning system.
  43. McCormack, James Joseph Anthony, Lighting control network.
  44. McCoy, Sean M.; Gydesen, Shane M.; Markus, Christopher M., Log collection data harvester for use in a building automation system.
  45. McCoy, Sean M.; Gydesen, Shane M.; Markus, Christopher M., Log collection data harvester for use in a building automation system.
  46. Grohman, Wojciech, Memory recovery scheme and data structure in a heating, ventilation and air conditioning network.
  47. Grohman, Wojciech; Hadzidedic, Darko, Memory recovery scheme and data structure in a heating, ventilation and air conditioning network.
  48. Grohman, Wojciech; Hadzidedic, Darko; Nanjundeshaiah, Kamala Kodihally; Courtney, Michael, Method of controlling equipment in a heating, ventilation and air conditioning network.
  49. Kowald, Glenn Will; Hadzidedic, Darko, Method of starting a HVAC system having an auxiliary controller.
  50. Mohan, Reshma; Gaurav, Galib; Rajkumar, Malathy; Sampathkumar, Karthic; Ankireddy, Venkata Prakash Reddy, Multi-level security mechanism for accessing a panel.
  51. Abelow, Daniel H., Reality alternate.
  52. Funk, Karsten; Ravula, Sharmila; Schaefer, Jochen, Secure control of wireless sensor network via the internet.
  53. McCoy, Sean M.; Gydesen, Shane M.; Sun, Weiwei; Richards, David M., Simultaneous connectivity and management across multiple building automation system networks.
  54. Boydstun, Roger L., System and method for extending communication protocols.
  55. Grohman, Wojciech; Filbeck, Amanda; Wallaert, Timothy E., System and method for zoning a distributed architecture heating, ventilation and air conditioning network.
  56. Filbeck, Amanda; Wallaert, Timothy E.; Thorson, Timothy H., System and method for zoning a distributed-architecture heating, ventilation and air conditioning network.
  57. Grohman, Wojciech; Filbeck, Amanda, System and method for zoning a distributed-architecture heating, ventilation and air conditioning network.
  58. Devineni, Suresh Kumar; Wallaert, Timothy; Mirza, Muhammad Ali; Pavlak, Thomas Gerald; Thorson, Timothy H., System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  59. Filbeck, Amanda; Spencer, Christopher W.; Stanbouly, Souhel H.; Thorson, Timothy H., System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  60. Jennings, Jacob; Pavlak, Thomas Gerald; Filbeck, Amanda; Spencer, Christopher W., System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  61. Mirza, Muhammad Ali; Jennings, Jacob; Filbeck, Amanda, System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  62. Mirza, Muhammad Ali; Thorson, Timothy H., System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  63. Pavlak, Thomas Gerard; Jennings, Jacob, System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  64. Pavlak, Thomas Gerard; Wallaert, Timothy; Thorson, Timothy H., System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  65. Wallaert, Timothy E.; Pavlak, Thomas G.; Thorson, Timothy H.; Mirza, Muhammad Ali; Devineni, Suresh Kumar, System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  66. Wallaert, Timothy; Thorson, Timothy H.; Jennings, Jacob, System and method of use for a user interface dashboard of a heating, ventilation and air conditioning network.
  67. Grohman, Wojciech, System recovery in a heating, ventilation and air conditioning network.
  68. Grohman, Wojciech, System recovery in a heating, ventilation and air conditioning network.
  69. Grohman, Wojciech; Hadzidedic, Darko, System recovery in a heating, ventilation and air conditioning network.
  70. Storm, Timothy Wayne; Taylor, John Tanner, Systems and methods for controlling multiple HVAC systems.
  71. Wallaert, Timothy; Thorson, Timothy H.; Pavlak, Thomas G., Thin cover plate for an electronic system controller.
  72. Wallaert, Timothy; Thorson, Timothy H.; Pavlak, Thomas G., Thin cover plate for an electronic system controller.
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