IP Library Granted Patent US 9,397,509
Granted Patent B2
US 9,397,509 · App. 13/350,706 · Granted Jul 19, 2016

Charge equalization systems and methods for battery systems and uninterruptible power supplies

Inventors: James Joseph Heidenreich (Bellingham, WA); Michael A. Haass (Bellingham, WA); Thanh Quoc Le (Ferndale, WA); Seth William Jennings (Ferndale, WA)
Assignee: Alpha Technologies Inc.
H02J7/0019H02J9/061Y10T307/527
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Quick Facts
Patent No.
US 9,397,509
App. No.
13/350,706
Granted
Jul 19, 2016
Kind
B2
Abstract

A battery system having at least one battery string of more than two batteries connected in series, a charge equalization circuit, a relay matrix, and a balance controller. The charge equalization circuit is capable of equalizing the charge on any pair of series connected batteries in the at least one battery string. The relay matrix is operatively connected between the charge equalization circuit and the at least one battery string. The balance controller controls the relay matrix such that at least one to battery characteristic of at least one battery is sensed. Based on at least one sensed battery characteristic, the balance controller controls the relay matrix such that the charge equalization circuit is connected across at least one pair of series connected batteries in the at least one battery string.

Claims (61)

1. A battery system comprising:

a plurality of battery strings comprising more than two batteries connected in series, where the plurality of battery strings are connected in parallel;

a charge equalization circuit capable of equalizing the charge on any pair of series connected batteries in the any one of the plurality of battery strings;

a relay matrix operatively connected between the charge equalization circuit and the plurality of battery strings; and

a balance controller for controlling the relay matrix; wherein

based on at least one of a sensed voltage and a sensed current of the batteries, the balance controller controls the relay matrix such that the charge equalization circuit is connected across any one of the pairs of series connected batteries in any one of the plurality of battery strings.

2. The battery system as recited in claim 1 , in which the balance controller controls the relay matrix such that the charge equalization circuit is connected across a plurality of pairs of series connected batteries in the plurality of battery strings.

3. The battery system as recited in claim 1 , further comprising a wire harness connected between the relay matrix and the plurality of battery strings.

4. A UPS system for supplying power to a load based on a power signal provided by a power source, comprising:

a plurality of battery strings comprising more than two batteries connected in series, where the plurality of battery strings are connected in parallel;

an inverter and charger circuit operatively connected between

the power source and the at least one battery string, and

the at least one battery string and the load;

a charge equalization circuit capable of equalizing the charge on any pair of series connected batteries in the any one of the plurality of battery strings;

a relay matrix operatively connected between the charge equalization circuit and the plurality of battery strings; and

a balance controller for controlling the relay matrix; wherein

based on at least one of a sensed voltage and a sensed current of the batteries, the balance controller controls the relay matrix such that the charge equalization circuit is connected across any one of the pairs of series connected batteries in any one of the plurality of battery strings.

5. The UPS system as recited in claim 4 , in which the balance controller controls the relay matrix such that the charge equalization circuit is connected across a plurality of pairs of series connected batteries in any one of the plurality of battery strings.

6. The UPS system as recited in claim 4 , further comprising a wire harness connected between the relay matrix and the plurality of battery strings.

7. The UPS system as recited in claim 4 , further comprising a transformer module operatively connected between:

the power source and the load; and

the inverter and charger circuit and the load.

8. A battery system comprising:

a plurality of battery strings, where

each battery string comprises more than two batteries connected in series, and

the battery strings are connected in parallel;

at least one charge equalization circuit capable of equalizing the charge on any pair of series connected batteries;

a relay matrix operatively connected between the charge equalization circuit and the plurality of battery strings; and

a balance controller for controlling the relay matrix; wherein

based on at least one of a sensed voltage and a sensed current of the batteries, the balance controller controls the relay matrix such that at least one charge equalization circuit is connected across any one of the pairs of series connected batteries in any one of the plurality of battery strings.

9. The battery system as recited in claim 8 , in which the balance controller controls the relay matrix such that the charge equalization circuit is connected across a plurality of pairs of series connected batteries in the plurality of battery strings.

10. The system as recited in claim 8 , further comprising a wire harness connected between the relay matrix and the at least one battery string.

11. A UPS system for supplying power to a load based on a power signal provided by a power source, comprising:

a plurality of battery strings, where

each battery string comprises more than two batteries connected in series, and

the battery strings are connected in parallel;

an inverter and charger circuit operatively connected between

the power source and the at least one battery string, and

the at least one battery string and the load;

at least one charge equalization circuit capable of equalizing the charge on any pair of series connected batteries in any one of the plurality of battery strings;

a relay matrix operatively connected between the charge equalization circuit and the plurality of battery strings;

a balance controller for controlling the relay matrix; wherein

based on at least one of a sensed voltage and a sensed current of the batteries, the balance controller controls the relay matrix such that at least one charge equalization circuit is connected across a plurality of pairs of series connected batteries in the plurality of battery strings to equalize charges on the batteries.

12. The UPS system as recited in claim 11 , further comprising a wire harness connected between the relay matrix and the plurality of battery strings.

13. The UPS system as recited in claim 11 , further comprising a transformer module operatively connected between:

the power source and the load; and

the inverter and charger circuit and the load.

14. A method of supplying power to a load based on a power signal provided by a power source, comprising:

providing a plurality of battery strings each comprising more than two batteries connected in series;

connecting the battery strings in parallel;

operatively connecting an inverter and charger circuit between

the power source and the at least one battery string, and

the at least one battery string and the load;

providing at least one charge equalization circuit capable of equalizing the charge on any pair of series connected batteries in the any one of the plurality of battery strings;

operatively connecting a relay matrix between the charge equalization circuit and the plurality of battery strings;

providing a balance controller for controlling the relay matrix; and

operating the balance controller to control the relay matrix such that the relay matrix is controlled such that at least one charge equalization circuit is connected across a plurality of pairs of series connected batteries in the plurality of battery strings to equalize charges on the batteries based on sensed voltage and current of the batteries in the plurality of battery strings.

15. The method as recited in claim 14 , further comprising the step of connecting a wire harness connected between the relay matrix and the plurality of battery strings.

16. The method as recited in claim 14 , further comprising the step of operatively connecting a transformer module between:

the power source and the load; and

the inverter and charger circuit and the load.

Assignments (3)
MERGER Recorded Mar 15, 2019
From: OPTIMUS ACQUISITION LLC
To: ALPHA TECHNOLOGIES SERVICES, INC.
Reel/Frame 048616/0510 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2019
From: ALPHA TECHNOLOGIES INC.
To: OPTIMUS ACQUISITION LLC
Reel/Frame 048598/0180 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2012
From: HEIDENREICH, JAMES JOSEPH; HAASS, MICHAEL A; LE, THANH QUOC; JENNINGS, SETH WILLIAM
To: ALPHA TECHNOLOGIES INC
Reel/Frame 028200/0942 →
Continuity (2)
Provisional Application 61435298 · Jan 22, 2011
Related Publication 20120217806A1 · Aug 30, 2012