Claims
- 1. A method for constructing a battery, the method comprising:
providing at least one module by connecting at least two energy storage sections in parallel to a common module power bus, the at least two energy storage sections having at least one battery cell and at least one section disconnect device to disconnect the at least one of the at least two energy storage sections from the common module power bus, acquiring data associated with the at least one battery cell in the at least two energy storage sections, and, based on the data, controlling the section disconnect device to disconnect one or more of the at least two energy storage sections from the module power bus.
- 2. A method according to claim 1, where acquiring data includes acquiring data associated with at least one of: battery cell voltage, battery cell temperature, and battery cell current.
- 3. A method according to claim 1, where acquiring includes acquiring using section protection device, said section protection device for comparing the acquired data against at least one predetermined value.
- 4. A method according to claim 1, where the section disconnect device is thermally activated.
- 5. A method according to claim 1, where the section disconnect device includes a resistive heating device.
- 6. A method according to claim 4, where the section disconnect device is activated by an electrical current.
- 7. A method according to claim 1, where the at least two energy storage sections include an equalizer device for directing energy from at least one battery cell output terminal to an electrically resistive device.
- 8. A method according to claim 7, where the directing is based on a predetermined battery cell voltage setting.
- 9. A method according to claim 1, further comprising connecting the at least one module in series.
- 10. A method according to claim 9, where the at least one module is associated with at least one module protection device for receiving data associated with at least one of a voltage, a temperature, and a current based on the at least one module.
- 11. A method according to claim 10, further comprising comparing the received data to at least one threshold, and based on the comparison, controlling an interlock signal that connects the series connected modules.
- 12. A method according to claim 11, where the interlock signal controls a pack disconnect device to disconnect the battery module from at least one of a charge source and a load.
- 13. A method according to claim 1, where at least two energy storage sections includes at least one fuse.
- 14. A method according to claim 1, further including providing battery cell protection devices for at least one of the at least one battery cells.
- 15. A battery, comprising:
at least two energy storage sections connected in parallel to a common module power bus, the at least two energy storage sections including at least one battery cell and at least one section disconnect device capable of disconnecting at least one of the at least two energy sections from the module power bus, and, a section protection device to control the section disconnect device based on data from the at least two energy storage sections.
- 16. A battery according to claim 15, where the data is associated with at least one of a temperature, a voltage, and a current.
- 17. A battery according to claim 15, where the at least one battery cell is connected in a series-parallel arrangement.
- 18. A battery according to claim 15, where the section protection device compares at least one of a temperature, a voltage, and a current to at least one predetermined value to control the section disconnect device.
- 19. A battery according to claim 15, where the section protection device is associated with at least one of the at least two energy storage sections.
- 20. A battery according to claim 15, where the disconnect device is thermally activated.
- 21. A battery according to claim 15, where the disconnect device is activated by providing electrical current to a resistive heating element.
- 22. A battery according to claim 15, where the at least two energy storage sections include at least one equalization device.
- 23. A battery according to claim 22, where the at least one equalization device compares the at least one battery cell voltage to a predetermined voltage setting, and based on the comparison, directs energy from the at least one battery cell to an electrically resistive device.
- 24. A battery according to claim 15, further comprising a module protection device.
- 25. A battery according to claim 24, where the module protection device includes fault logic and an interlock signal control, the fault logic for providing control to the interlock signal control.
- 26. A battery comprising,
at least two battery modules connected in series using an interlock signal, the at least two battery modules further comprising: a module protection device, where the module protection device includes an interlock signal controller and fault logic for controlling the interlock signal controller, at least two energy storage sections connected in parallel to a common module power bus, the at least two energy storage sections including at least one battery cell and at least one section disconnect device capable of disconnecting at least one of the at least two energy sections from the module power bus, and, a section protection device to control the section disconnect device based on data from the at least two energy storage sections.
- 27. A battery according to claim 26, further comprising a pack disconnect device connected in series to the interlock signal, the pack disconnect device connected between the at least two battery modules and at least one of a load and a charger.
- 28. A battery according to claim 27, where the interlock signal controls the pack disconnect device.
- 29. A battery according to claim 27, where the module protection device for the at least one battery module controls the interlock signal to cause the pack disconnect device to disconnect at least one of the load and the charger from the at least one battery module.
CLAIM OF PRIORITY
[0001] This application claims priority to U.S. Pat. No. 60/355,883 entitled “Method and Apparatus for Reliable Parallel Operation of Battery Cells,” filed on Feb. 11, 2002, naming Stephen Spencer Eaves of Charlestown, R.I. as inventor, the contents of which are herein incorporated by reference in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60355883 |
Feb 2002 |
US |