IP Library Granted Patent US 8,884,582
Granted Patent B2
US 8,884,582 · App. 13/275,503 · Granted Nov 11, 2014

Battery management system utilizing stackable batteries

Inventors: William Jeff DeFrank (Livonia, MI); Joseph Richard Bertrand (Canton, MI); Albert W. Harrison, III (Detroit, MI)
Assignee: ALTe Powertrain Technologies, Inc.
H01M10/4207B60L11/1853Y02T10/705Y02E60/12H01M10/441H01M10/46H02J7/0013Y02T10/7005Y02T10/7055
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Quick Facts
Patent No.
US 8,884,582
App. No.
13/275,503
Granted
Nov 11, 2014
Kind
B2
Abstract

An energy storage system includes a battery management system that has a plurality of loads connected in electrical series with one another, and a controller operatively connected to the plurality of loads. A first battery pack has battery cells connected in electrical series with respect to one another to establish a system voltage. The first battery pack is connected in electrical parallel to the plurality of loads. The controller is operable to balance charges of the battery cells by activating selected ones of the loads. The battery management system and the first battery pack are configured such that an additional battery pack with additional battery cells connected in electrical series with respect to one another or an additional load pack with additional loads connected in electrical series with respect to one another is connectable to the battery management system. A method of managing battery capacity is also provided.

Claims (30)

1. An energy storage system comprising:

a battery management system including:

a plurality of loads connected in electrical series with one another;

and a controller operatively connected to the plurality of loads;

a first battery pack including battery cells connected in electrical series with respect to one another to establish a system voltage, wherein the first battery pack is connected in electrical parallel to the plurality of loads;

wherein the controller is operable to balance charges of the battery cells by activating selected ones of the loads;

wherein the battery management system and the first battery pack are configured such that at least one of (a) an additional battery pack with additional battery cells connected in electrical series with respect to one another, and (b) an additional load pack with additional loads connected in electrical series with respect to one another, is connectable to the battery management system; and

wherein the controller is further operable to balance charges of the additional battery cells of the additional battery pack when the additional battery pack is connected and is operable to activate the additional loads of the additional load pack when the additional load pack is connected, wherein said at least one of the additional battery pack and the additional load pack are connected to the battery management system to maintain a ratio of a total load on the battery cells of the first battery pack and the battery cells of the additional battery pack to a total capacity of the cattery cells of the first battery pack and the battery cells of the additional battery pack within a predetermined ratio range.

2. The energy storage system of claim 1 , further comprising:

a first housing; wherein the plurality of loads and the first battery pack are located in the first housing; and

a second housing connected to the first housing; wherein one of the additional battery pack and the additional load pack are located in the second housing.

3. The energy storage system of claim 1 , wherein the first battery pack and the plurality of loads are connected to one another via complementary connectors each of which includes at least one of a high voltage connector, a general electrical connector, and a fluid connector such that electrical and cooling requirements of the first battery pack and the loads are provided through the complementary connectors.

4. The energy storage system of claim 1 , wherein the battery management system, the additional battery pack, and the additional load pack are each housed in a separate respective housing that supports complementary connectors at the same location on each of the respective housings to permit connection of the battery management system, the additional battery pack and the additional load pack.

5. An energy storage system comprising:

a load pack having a plurality of loads connected in electrical series with respect to one another;

at least one battery pack having a plurality of battery cells connected in electrical series with respect to one another, wherein said plurality of battery cells of said at least one battery pack is connected in electrical parallel with said plurality of loads of said at least one load pack;

a controller operatively connected to said plurality of loads and operable for managing charging and usage of said plurality of battery cells;

wherein the load pack and said at least one battery pack each include at least one connector; and

at least one of an additional battery pack and an additional load pack having at least one complementary connector connectable to said at least one connector so that said at least one of an additional battery pack and an additional load pack is operatively connectable in parallel with the load pack and with said at least one battery pack, and is operatively connected to the controller when said at least one connector is connected with said at least one complementary connector, wherein the controller is operable to rebalance charges of the battery cells to maintain a ratio within a predetermined ratio range; wherein the ratio is a total capacity of the battery cells of said at least one battery pack and battery cells of the additional battery pack to a total load of said plurality of loads of said at least one load pack and loads of the additional load pack on the cattery cells.

6. The energy storage system of claim 5 , further including a housing; wherein the load pack, the controller and said at least one battery pack are located in the housing to establish a battery management system.

7. The energy storage system of claim 5 , further including:

a first housing supporting said at least one connector of the load pack; wherein the load pack and the controller are located in the first housing to establish a battery management system; and

a second housing supporting said at least one connector of said at least one battery pack; and wherein said at least one battery pack is located in the second housing.

8. The energy storage system of claim 5 , wherein the load pack, the additional battery pack, and the additional load pack are each housed in a separate respective housing that supports complementary connectors at the same location on each of the respective housings to permit connection of the load pack, the additional battery pack and the additional load pack.

9. The energy storage system of claim 8 , wherein each of the complementary connectors includes at least one of a high voltage connector, a general electrical connector, and a fluid connector such that electrical and cooling requirements of said at least one battery pack and the loads are provided through the complementary connectors.

10. A method of managing battery capacity comprising:

connecting a load pack and a battery pack in electrical parallel with respect to one another and in operative connection with a controller; and

connecting at least one of an additional battery pack and an additional load pack to electrical connectors of the load pack and the battery pack such that said at least one of an additional battery pack and an additional load pack are in operative connection with the controller; and

controlling a total load of the load pack and the additional load pack to a total capacity of the battery pack and the additional battery pack within a predetermined ratio range via the controller.

11. The method of claim 10 , wherein connecting at least one of the additional battery pack and the additional load pack includes connecting complementary external connectors of said at least one of the additional battery pack and the additional load pack to the external connectors of the load pack and the battery pack.

Assignments (5)
SECURITY INTEREST Recorded Aug 23, 2022
From: EMATRIX ENERGY SYSTEMS, INC.
To: LINAMAR HOLDING NEVADA, INC.
Reel/Frame 060865/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2016
From: ALTE TECHNOLOGIES, INC
To: EMATRIX ENERGY SYSTEMS, INC.
Reel/Frame 039094/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2013
From: ALTE, LLC
To: ALTE POWERTRAIN TECHNOLOGIES, INC.
Reel/Frame 030333/0988 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 027167 FRAME 0351. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECTION OF ASSIGNEE NAME FROM ALTE TO ALTE, LLC. Recorded Apr 30, 2013
From: DEFRANK, WILLIAM JEFF; BERTRAND, JOSEPH RICHARD; HARRISON, ALBERT W., III
To: ALTE, LLC
Reel/Frame 030322/0613 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2011
From: DEFRANK, WILLIAM JEFF; BERTRAND, JOSEPH RICHARD; HARRISON, ALBERT W., III
To: ALTE
Reel/Frame 027167/0351 →
Continuity (2)
Provisional Application 61394513 · Oct 19, 2010
Related Publication 20120091962A1 · Apr 19, 2012