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Apparatus for determining the state of physical properties of rechargeable electric energy storage devices 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01R-013/36
출원번호 US-0784444 (1991-11-12)
우선권정보 DE-3915550 (1989-05-12); JP-0120102 (1989-05-12)
발명자 / 주소
  • Birkle Michael (Karlsruhe DEX) Grasemann Gunther (Karlsruhe DEX) Steusloff Hartwig (Karlsruhe DEX)
출원인 / 주소
  • Fraunhofer Gesellschaft zur Foerder der angewandten Forschung e. V. (DEX 03)
인용정보 피인용 횟수 : 42  인용 특허 : 0

초록

A process for determination of the state of physical properties of rechargeable electric energy storage device. Process input values of the energy storage device are measured and processed in a computer, in accordance with a predetermined model in the form of closed linear or non-linear multiparamet

대표청구항

A method of determining a state of charge and other physical properties of a rechargeable electric energy storage apparatus, which storage apparatus is subjected to a process which alters said physical properties, said method comprising the steps of: measuring at least one input value for said physi

이 특허를 인용한 특허 (42)

  1. Song Sung-ku,KRX, Battery capacity prediction method and apparatus using natural logarithm.
  2. Nor Jiri K.,CAX, Battery energy monitoring circuits.
  3. Lupo, Savino Luigi, Battery monitoring device.
  4. Bardsley ; Jr. David John ; Song Jing, Battery state of charge sensing system.
  5. Scott, Erik; Guy, Dave P., Capacity fade adjusted charge level or recharge interval of a rechargeable power source of an implantable medical device, system and method.
  6. Koch, Ingo; Meissner, Eberhard, Device and method for battery state determination.
  7. Bruwer Frederick J.,ZAX, Intelligent electrical device comprising microchip.
  8. Bruwer,Frederick Johannes, Intelligent electrical devices.
  9. Bruwer,Frederick Johannes, Intelligent electrical devices.
  10. Bruwer, Frederick J., Intelligent electrical switching device.
  11. Bruwer, Frederick J., Intelligent electrical switching device.
  12. Bruwer,Frederick J., Intelligent electrical switching device.
  13. Bruwer,Frederick J., Intelligent electrical switching device including a touch sensor switch.
  14. Bruwer,Frederick J., Intelligent electrical switching device including a touch sensor user interface switch.
  15. Bruwer, Frederick J., Intelligent electrical switching devices.
  16. Bruwer,Frederick Johannes; Aucamp,Brandt; Greyling,Abraham Carl, Intelligent switch for connecting power to a load.
  17. Bruwer, Frederick J., Intelligent user interface including a touch sensor device.
  18. Bruwer, Frederick J., Intelligent user interface including a touch sensor device.
  19. Bruwer, Frederick J., Intelligent user interface including a touch sensor device.
  20. Bruwer, Frederick J., Intelligent user interface including a touch sensor device.
  21. Bruwer, Frederick J., Intelligent user interface including a touch sensor device.
  22. Suntio, Teuvo; Tenno, Robert; Tenno, Ander, Method and apparatus for soft-sensor characterization of batteries.
  23. Hall, A. Daniel, Method and apparatus that detects state of charge (SOC) of a battery.
  24. Schoch, Eberhard, Method and arrangement for determination of the state of charge of a battery.
  25. Schoch, Eberhard, Method and device for determining the charge that can be drawn from an energy accumulator.
  26. Sarfert, Christel, Method and device for state sensing of technical systems such as energy stores.
  27. Singh, Pritpal; Fennie, Jr., Craig; Reisner, David E., Method and system for determining state-of-health of a lead-acid defibrillator battery using an intelligent system.
  28. Singh,Pritpal; Fennie, Jr.,Craig; Reisner,David E., Method and system for determining state-of-health of a nickel-metal hydride battery using an intelligent system.
  29. Schoch, Eberhard, Method and system for determining the capacity of a battery.
  30. Singh, Pritpal; Fennie, Jr., Craig; Reisner, David E., Method and system to determine state-of-health of a fuel cell using an intelligent system.
  31. Singh Pritpal ; Fennie ; Jr. Craig, Method for determining state-of-charge using an intelligent system.
  32. Pritpal Singh ; Craig Fennie, Jr. ; David E. Reisner, Method for determining state-of-health using an intelligent system.
  33. Tate, Jr.,Edward D.; Verbrugge,Mark W.; Koch,Brian J.; Frisch,Damon R., Method for estimating states and parameters of an electrochemical cell.
  34. Sarfert, Christel; Schoch, Eberhard; Schoettle, Richard, Method for identifying the condition of an energy accumulator.
  35. Ishikawa, Yosuke, Method of estimating battery state of charge.
  36. Nakao Taketoshi,JPX ; Ugaji Masaya,JPX ; Takeyama Kenichi,JPX, Method of measuring quantities indicating state of electrochemical device and apparatus for the same.
  37. Chabbert Philippe (Rueil Malmaison FRX) Chatenay Alain (Marly le Roi FRX) Meux Dominique (Toulouse FRX), Process for evaluating the remaining charge in an accumulator battery.
  38. Schoch, Eberhard, State and parameter estimator having integral and differential components for electrical energy accumulators.
  39. Rondoni, John C.; Jain, Mukul, System and method for monitoring a power source of an implantable medical device.
  40. Subbotin, Maksim; Krupadanam, Ashish Samuel; Chaturvedi, Nalin; Ahmed, Jasim, System and method for posteriori adaptation of a state of charge model in a battery.
  41. Rondoni, John C.; Davis, Jon P.; Bright, Kevin L.; Sahasrabudhe, Rajeev M., Time remaining to charge an implantable medical device, charger indicator, system and method therefore.
  42. Rondoni, John C.; Davis, Jon P.; Bright, Kevin L.; Sahasrabudhe, Rajeev M., Time to next recharge session feedback while recharging an implantable medical device, system and method therefore.
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