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Simple optimal estimator for PbA state of charge 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H02J-007/00
  • G06F-019/00
출원번호 US-0650933 (2003-08-28)
§371/§102 date 20040817 (20040817)
발명자 / 주소
  • Tate, Jr., Edward D.
  • Verbrugge, Mark W.
출원인 / 주소
  • General Motors Corporation
인용정보 피인용 횟수 : 49  인용 특허 : 11

초록

A state of charge estimator for a battery includes a meter that generates a terminal voltage signal of the battery and a terminal current signal of the battery. A controller employs a linearized model of the battery and a time-varying state estimator. The controller process a synthesized input based

대표청구항

1. A method of estimating a state of charge of a battery, comprising:modeling battery measured variables of said battery with a linear equation; measuring a terminal current of said battery; measuring a terminal voltage of said battery; and processing said linear equation through a time-varying stat

이 특허에 인용된 특허 (11)

  1. Kevin I. Bertness, Apparatus and method for testing rechargeable energy storage batteries.
  2. Bertness Kevin I., Electronic battery tester.
  3. Finger Eugene P. (Brewster NY) Sands Eugene A. (Scarsdale NY), Method and apparatus for measuring the state of charge of a battery by monitoring reductions in voltage.
  4. Bertness Kevin I., Midpoint battery monitoring.
  5. Grewe Timothy Michael ; Osovski Steve William, Phase change assisted heat sink.
  6. Timothy Michael Grewe ; Steve William Osovski, Phase change assisted heat sink.
  7. Mark William Verbrugge ; Edward Dean Tate, Jr. ; Shawn D. Sarbacker ; Brian James Koch, Quasi-adaptive method for determining a battery's state of charge.
  8. Verbrugge, Mark William; Tate, Jr., Edward Dean; Frisch, Damon R.; Ying, Ramona Y.; Koch, Brian James; Sarbacker, Shawn D., State of charge method and apparatus.
  9. Edward Dean Tate, Jr. ; Mark William Verbrugge ; Shawn D. Sarbacker, State of charge prediction method and apparatus for a battery.
  10. Tate, Jr., Edward Dean; Verbrugge, Mark William; Sarbacker, Shawn D., State-of-charge detection device for a battery.
  11. Gephart Don A. (Delaware OH) Powell Jeffrey M. (Galena OH), UPS apparatus with control protocols.

이 특허를 인용한 특허 (49)

  1. Yumoto,Daijiro; Nakamura,Hideo, Apparatus and method for estimating charge rate of secondary cell.
  2. Bronczyk, Steven A.; Tom, Kwok; Koetting, William, Battery cell assemblies.
  3. Koetting, William; Tom, Kwok; Klein, Martin J.; Patil, Prabhakar; Kebl, Kelly, Battery cell assembly and method for assembling the battery cell assembly.
  4. Young, Heekook, Battery cell assembly and method for assembling the battery cell assembly.
  5. Payne, Josh; Isayev, Igor; Yang, Heekook; Koetting, William; Morris, Peter; Natarajan, Venkatachala Moorthi, Battery cell assembly having heat exchanger with serpentine flow path.
  6. Koetting, William; O'Kane, Sean; Tom, Kwok; Payne, Josh, Battery cell assembly, heat exchanger, and method for manufacturing the heat exchanger.
  7. Matejek, Bob; Niedzwiecki, Mark; Phillips, Greg; Yang, Hee Kook; Symons, Bryan; Merriman, Bob, Battery disconnect unit and method of assembling the battery disconnect unit.
  8. Daniel, Vaughan; Trader, Michael; Park, JongMin; Robertson, David C., Battery management system and method for transferring data within the battery management system.
  9. Gadawski, Thomas J.; Payne, Josh, Battery module and method for cooling the battery module.
  10. Koetting, William; Payne, Josh, Battery module and method for cooling the battery module.
  11. Payne, Josh, Battery module and method for cooling the battery module.
  12. Payne, Josh, Battery module and method for manufacturing the battery module.
  13. Khakhalev, Alex, Battery module and methods for bonding cell terminals of battery cells together.
  14. Niedzwiecki, Mark; Koetting, William; Payne, Josh; Isayev, Igor; Natarajan, Venkatachala Moorthi, Battery module having a rubber cooling manifold.
  15. Niedzwiecki, Mark; Yang, Heekook; Isayev, Igor, Battery module having battery cell assemblies with alignment-coupling features.
  16. Koetting, William; Patil, Prabhaker; Alamgir, Mohamed; Klein, Martin; Tom, Kwok, Battery module having battery cell assembly with heat exchanger.
  17. Koetting, William; Payne, Josh, Battery module having cooling manifold and method for cooling battery module.
  18. Khakhalev, Alex; Isayev, Igor, Battery modules having interconnect members with vibration dampening portions.
  19. Frost, Patrick; Koch, Brian J.; Frisch, Damon R.; Stawinski, Brett B.; Laskowsky, Patricia M.; Johnson, Kurt M.; Baraszu, Robert C., Battery state-of-charge estimation for hybrid and electric vehicles using extended kalman filter techniques.
  20. Gadawski, Thomas J., Battery system and manifold assembly having a manifold member and a connecting fitting.
  21. Gadawski, Thomas J., Battery system and manifold assembly with two manifold members removably coupled together.
  22. Koetting, William, Battery system and method for increasing an operational life of a battery cell.
  23. Payne, Josh, Battery systems, battery module, and method for cooling the battery module.
  24. Koetting, William; Payne, Josh, Battery systems, battery modules, and method for cooling a battery module.
  25. Payne, Josh, Battery systems, battery modules, and method for cooling a battery module.
  26. Gadawski, Thomas J., Connecting assembly.
  27. Payne, Josh, Cooling manifold.
  28. Gadawski, Thomas J., End cap.
  29. Koetting, William; Tom, Kwok; Payne, Josh, Frame member, frame assembly and battery cell assembly made therefrom and methods of making the same.
  30. Robertson, David C., Heating system for a battery module and method of heating the battery module.
  31. Robertson, David C., Heating system for a battery module and method of heating the battery module.
  32. Robertson, David C.; McNeill, Daniel K., Heating system for a battery module and method of heating the battery module.
  33. Robertson, David C.; McNeill, Daniel K., Heating system for a battery module and method of heating the battery module.
  34. Le, Daniel B.; Sisk, Brian C., Lead acid state of charge estimation for auto-stop applications.
  35. Plett, Gregory L., Method for calculating power capability of battery packs using advanced cell model predictive techniques.
  36. Wang, Shuoqin; Verbrugge, Mark W.; Wang, John S.; Liu, Ping, Method for determining a state of a rechargeable battery device in real time.
  37. Tate, Jr.,Edward D.; Verbrugge,Mark W.; Koch,Brian J.; Frisch,Damon R., Method for estimating states and parameters of an electrochemical cell.
  38. Breton, Mathew Ethan; Winkelman, James Raymond, Method of automotive electrical bus management.
  39. Chen, Lei; Veronesi, William A.; Oggianu, Stella M.; Blasko, Vladimir, Method of determining state of charge of energy storage system.
  40. Plett, Gregory L., State and parameter estimation for an electrochemical cell.
  41. Plett, Gregory L., System and method for estimating a state vector associated with a battery.
  42. Plett, Gregory L., System, method, and article of manufacture for determining an estimated battery cell module state.
  43. Plett, Gregory L., System, method, and article of manufacture for determining an estimated battery cell module state.
  44. Plett, Gregory L, System, method, and article of manufacture for determining an estimated battery state vector.
  45. Plett, Gregory L, System, method, and article of manufacture for determining an estimated battery state vector.
  46. Plett,Gregory L., System, method, and article of manufacture for determining an estimated battery state vector.
  47. Plett, Gregory L., System, method, and article of manufacture for determining an estimated combined battery state-parameter vector.
  48. Plett,Gregory L., System, method, and article of manufacture for determining an estimated combined battery state-parameter vector.
  49. Kuper, Christian; Guo, Qingzhi; Aliyev, Timur L., Systems and methods for directional capacity estimation of a rechargeable battery.
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