IP Library Granted Patent US 7,859,202
Granted Patent B2
US 7,859,202 · App. 11/977,118 · Granted Dec 28, 2010

Power management for multi-module energy storage systems in electric, hybrid electric, and fuel cell vehicles

Assignee: Illinois Institute of Technology
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Quick Facts
Patent No.
US 7,859,202
App. No.
11/977,118
Granted
Dec 28, 2010
Kind
B2
Abstract

An electric energy storage system (EESS) for providing a power management solution for a multi-subsystem energy storage in electric, hybrid electric, and fuel cell vehicles. The EESS has a controller that determines when to draw power from each subsystem as needed by the vehicle.

Claims (31)

1. A method for implementing an energy storage apparatus coupled with an electric motor/generator in a vehicle, the method comprising:

electrically connecting a controller between at least one converter and the electric motor/generator, the at least one converter including a first converter input electrically connected to a battery and a second converter input electrically connected to an ultracapacitor;

continually monitoring with the controller a state of charge of each of the battery and the ultracapacitor;

storing as parameters the current state of charge of each of the battery and the ultracapacitor with the controller and updating the stored parameters as a function of the continual monitoring;

monitoring with the controller a power demand of the electric motor/generator;

comparing the power demand to the stored parameters and selecting a percentage of the power demand to be supplied by the battery as a function of the stored parameters;

powering the electric motor/generator with the controller using electrical power from at least one of the battery or the ultracapacitor;

determining with the controller a power absorption parameter of each of the battery and the ultracapacitor to determine a recharge requirement of each of the battery and the ultracapacitor;

selecting with the controller at least one of the battery and the ultracapacitor for recharge; and

recharging the at least one of the battery or the ultracapacitor with the controller using electrical power generated by the electric motor/generator.

2. The method according to claim 1 , wherein the converter comprises a multi-input bi-directional DC/DC converter.

3. The method according to claim 1 , wherein the power demand is determined according to at least one of the parameter, a driving cycle of the vehicle, and the operating state of charge of each of the battery and the ultracapacitor.

4. The method according to claim 1 , wherein monitoring with the controller the operating state of charge of each of the battery and the ultracapacitor comprises determining if the operating state of charge of the battery or the ultracapacitor is below a predetermined maximum state of charge.

5. The method according to claim 1 , wherein monitoring with the controller the operating state of charge of each of the battery and the ultracapacitor comprises determining if the operating state of charge of the battery or the ultracapacitor is above a predetermined minimum state of charge.

6. The method according to claim 1 , wherein the vehicle comprises an internal combustion engine and a driveshaft, wherein the electric motor/generator and the internal combustion engine are coupled with the driveshaft to jointly or alternatively provide rotational motion to the driveshaft.

7. The method according to claim 1 , wherein the power absorption parameters of each of the battery and the ultracapacitor are a function of the stored parameters of the current state of charge of each of the battery and the ultracapacitor.

8. The method according to claim 1 , wherein as the vehicle brakes to a stop the controller adjusts the power absorption parameter of each of the battery and the ultracapacitor to ensure that the ultracapacitor is fully charged.

9. A method for implementing an energy storage apparatus coupled with an electric motor/generator in a vehicle, the method comprising:

electrically connecting a controller between at least one converter and the electric motor/generator, the at least one converter including a first converter input electrically connected to a first battery and a second converter input electrically connected to a second battery;

monitoring with the controller a power demand of the electric motor/generator;

monitoring with the controller an operating state of charge of each of the first battery and second battery;

powering the electric motor/generator with the controller using electrical power from at least one of the first battery and the second battery;

determining if the first battery needs conditioning; and

conditioning the first battery by sending all charging current from the electric motor/generator to the first battery and drawing power from the second battery to power the electric motor/generator, wherein conditioning the first battery includes charging to an over-charge to break-up sulfate crystals in the first battery.

10. The method according to claim 9 , further comprising:

establishing a threshold state of charge for each of the first battery and the second battery;

monitoring with the controller an operating state of charge for each of the first battery and the second battery;

determining the operating state of charge of one of the first battery and the second battery is at or below the threshold state of charge; and

powering the electric motor/generator with an other of the one of the first battery and the second battery when the one of the first battery and the second battery is at or below the threshold state of charge.

11. The method according to claim 10 , further comprising directing electrical power with the controller from the electric motor/generator to the one of the first battery and the second battery when the operating state of charge is at or below the threshold state of charge.

12. The method according to claim 9 , further comprising directing electrical power with the controller from the electric motor/generator to one of the first battery and the second battery on a predetermined schedule and powering the electric motor/generator with an other of the first battery and the second battery.

Assignments (6)
SECURITY INTEREST Recorded Dec 23, 2025
From: TURNTIDE TECHNOLOGIES INC.; AVID TECHNOLOGY LIMITED; HYPERDRIVE INNOVATION LTD; TURNTIDE DRIVES LIMITED
To: AVENUE VENTURE OPPORTUNITIES FUND II, L.P., AS AGENT
Reel/Frame 074050/0011 →
CHANGE OF NAME Recorded Jul 23, 2020
From: SOFTWARE MOTOR COMPANY
To: TURNTIDE TECHNOLOGIES INC.
Reel/Frame 053294/0848 →
CHANGE OF NAME Recorded Dec 26, 2017
From: SOFTWARE MOTOR CORPORATION
To: SOFTWARE MOTOR COMPANY
Reel/Frame 044975/0700 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: ILLINOIS INSTITUTE OF TECHNOLOGY
To: MESON CONSTRUCTIVE CAPITAL LP
Reel/Frame 044384/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: MESON CONSTRUCTIVE CAPITAL LP
To: SOFTWARE MOTOR CORPORATION
Reel/Frame 044045/0145 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2007
From: LUKIC, SRDJAN; EMADI, ALI
To: ILLINOIS INSTITUTE OF TECHNOLOGY
Reel/Frame 020050/0256 →
Continuity (3)
Provisional Application 6090603900 · Mar 9, 2007
Provisional Application 6096768300 · Sep 6, 2007
Related Publication 20080218104A1 · Sep 11, 2008