Claims
- 1. In a rechargeable electrochemical battery system having a battery pack comprising a series arrangement of electrochemical modules including end modules at opposite ends of the series arrangement, each of said modules having a positive and a negative terminal and a respective module voltage thereacross, said battery pack having an aggregate pack voltage terminal comprising the positive terminal of the one of the end modules with its respective negative terminal connected to an adjacent module and an aggregate pack ground terminal comprising the negative terminal of the other of the end modules with its positive terminal connected to an adjacent module, each module further having a corresponding pack node voltage across its respective positive terminal and the aggregate pack ground terminal, a module charge equalization apparatus comprising:
- a charging source coupled across the aggregate pack voltage terminal and aggregate pack ground terminal; and,
- a plurality of switched mode power converter means, each converter means coupled to a respective pair of said modules which are adjacent one another such that all pairs of adjacent modules have associated therewith one of the plurality of converter means, each of said converter means being responsive to the module voltages of the respective pair of adjacent modules coupled thereto to bidirectionally pump charge from the positive terminal of the one of said respective pair of adjacent modules which has a greater module voltage to the positive terminal of the other of said respective pair of adjacent modules which has a lesser module voltage.
- 2. In a rechargeable electrochemical battery system having a battery pack comprising a series arrangement of electrochemical modules including end modules at opposite ends of the series arrangement, each of said modules having a positive and a negative terminal and a respective module voltage thereacross, said battery pack having an aggregate pack voltage terminal comprising the positive terminal of the one of the end modules with its respective negative terminal connected to an adjacent module and an aggregate pack ground terminal comprising the negative terminal of the other of the end modules with its positive terminal connected to an adjacent module, each module further having a corresponding pack node voltage across its respective positive terminal and the aggregate pack ground terminal, a module charge equalization apparatus comprising:
- a charging source coupled across the aggregate pack voltage terminal and aggregate pack ground terminal; and,
- a plurality of switched mode power converter means, each converter means coupled to a respective pair of said modules which are adjacent one another such that all pairs of adjacent modules have associated therewith one of the plurality of converter means, each of said converter means being responsive to the module voltages of the respective pair of adjacent modules coupled thereto to unidirectionally pump charge from the positive terminal of a first one of said respective pair of adjacent modules to the positive terminal of a second one of said respective pair of adjacent modules only when the module voltage of the first one of said pair of adjacent modules exceeds the module voltage of the second one of said pair of adjacent modules, the respective first and second ones of all pairs of adjacent modules having the same relative positions within the series arrangement.
- 3. A module charge equalization apparatus as claimed in claim 2 further comprising:
- a simulated pair of adjacent modules comprising the one of the end modules last in the series arrangement in the direction of charge pump and a simulated module having a positive and a negative terminal and a simulated module voltage thereacross,
- an additional converter means coupled to the simulated pair of adjacent modules and responsive to the module voltage and the simulated module voltage of the simulated pair of adjacent modules coupled thereto to unidirectiona1lly pump charge from the positive terminal of the one of the end modules last in the series arrangement in the direction of charge pump to the positive terminal of the simulated module only when the module voltage of the one of the end modules last in the series arrangement in the direction of charge pump exceeds the simulated module voltage of the simulated module.
- 4. A module charge equalization apparatus as claimed in claim 3 herein said simulated module shunts the charge pumped thereto to thereby dissipate the energy associated therewith.
- 5. A module charge equalization apparatus as claimed in claim 4 wherein said simulated module redistributes the charge pumped thereto to the positive terminal of the other of the end modules.
- 6. A module charge equalization apparatus as claimed in claim 2 wherein the first one of said pair of adjacent modules comprises the one module of said pair of adjacent modules having a greater pack node voltage than the other module of said pair of adjacent modules.
- 7. A module charge equalization apparatus as claimed in claim 2 wherein the first one of said pair of adjacent modules comprises the one module of said pair of adjacent modules having a lesser pack node voltage than the other module of said pair of adjacent modules.
Parent Case Info
This is a continuation of application Ser. No. 08/178,170 filed on 6 Jan. 1994, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (3)
Number |
Date |
Country |
3940929 |
May 1991 |
DEX |
432639 |
Jun 1991 |
DEX |
WO9500978 |
Jan 1995 |
WOX |
Non-Patent Literature Citations (3)
Entry |
Hopkins, D. C.; "The Use of Equalizing Converters for Serial Charging of Long Battery Strings"; Jun. 1991; IEEE. |
IEEE Transactions on Industry Applications, vol. 29, No. 2, Apr. 1993. |
D. Hopkins et al. "Dynamic Equalization During Charging of Serial Energy Storage Elements", pp. 363-367. |
Continuations (1)
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Number |
Date |
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Parent |
178170 |
Jan 1994 |
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