HYBRID BATTERY SYSTEM FOR ELECTRIC AND HYBRID ELECTRIC VEHICLES
A battery module for an electric vehicle or a hybrid electric vehicle having two or more battery components having different electrochemistries.
1 . An electrochemical cell for an energy storage system of an application having design energy and power requirements, comprising:
the energy storage system further comprising first and second energy storage system components;
said first energy storage system component adapted to provide the primary energy (Watt hours) requirements of the application;
said second energy storage system component adapted to provide the primary power (Watts) requirements of the application;
wherein said first and second energy storage system components combined are less than the total energy requirements of an energy storage system adapted to supply both the power (W) and energy (Whr) design requirements of the application.
2 . The electrochemical cell of claim 1 wherein the application is an electric vehicle.
3 . The electrochemical cell of claim 1 , wherein said first energy storage system component is selected from the group comprising: Li-ion battery pack; Ni-MH battery pack; flywheel, capacitor; and fuel cell.
4 . The electrochemical cell of claim 1 , wherein said second energy storage system further comprises a lead-acid battery component.
5 . The electrochemical cell of claim 1 , wherein said first energy storage system component is a Li-ion battery pack and said second energy storage system component is a lead-acid battery pack.
6 . The electrochemical cell of claim 1 , wherein said first and second components occupy less volume than said energy storage system adapted to provide both the design energy and power requirements of the application.
7 . The electrochemical cell of claim 1 , wherein the combined cost of said first and second components is less than the cost of said energy storage system adapted to provide both the design energy and power requirements of the application.
8 . The electrochemical cell of claim 1 , wherein said first energy storage component runs at a lower C-rate than said energy storage system adapted to provide both the design energy and power requirements of the application.
9 . The electrochemical cell of claim 1 , wherein said first energy storage component is adapted to operate at a lower temperature than said energy storage system adapted to provide both the design energy and power requirements of the application.
10 . A battery for an application having design energy and power requirements, comprising:
the energy storage system further comprising first and second energy storage system components;
said first energy storage system component adapted to provide the primary energy (Watt hours) requirements of the application;
said second energy storage system component adapted to provide the primary power (Watts) requirements of the application;
wherein said first and second energy storage system components combined are less than the total energy requirements of a single chemistry energy storage system adapted to supply both the power (W) and energy (Whr) design requirements of the application.
11 . The battery of claim 10 wherein the application is an electric vehicle.
12 . The battery of claim 10 , wherein said first energy storage system component is selected from the group comprising: Li-ion battery pack; Ni-MH battery pack; flywheel, capacitor; and fuel cell.
13 . The battery of claim 10 , wherein said second energy storage system further comprises a lead-acid battery component.
14 . The battery of claim 10 , wherein said first energy storage system component is a Li-ion battery pack and said second energy storage system component is a lead-acid battery pack.
15 . The battery of claim 10 , wherein said first and second components occupy less volume than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
16 . The battery of claim 10 , wherein the combined cost of said first and second components is less than the cost of said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
17 . The battery of claim 10 , wherein said first energy storage component runs at a lower C-rate than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
18 . The battery of claim 10 , wherein said first energy storage component is capable of tolerating operation at a lower temperature than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
19 . An energy storage system for an application having design energy and power requirements, comprising:
the energy storage system further comprising first and second energy storage system components;
said first energy storage system component adapted to provide the primary energy (Watt hours) requirements of the application;
said second energy storage system component adapted to provide the primary power (Watts) requirements of the application;
wherein said first and second energy storage system components combined are less than the total energy requirements of a single chemistry energy storage system adapted to supply both the power (W) and energy (Whr) design requirements of the application.
20 . The system of claim 19 wherein the application is an electric vehicle.
21 . The system of claim 19 , wherein said first energy storage system component is selected from the group comprising: Li-ion battery pack; Ni-MH battery pack; flywheel, capacitor; and fuel cell.
22 . The system of claim 19 , wherein said second energy storage system further comprises a lead-acid battery component.
23 . The system of claim 19 , wherein said first energy storage system component is a Li-ion battery pack and said second energy storage system component is a lead-acid battery pack.
24 . The system of claim 19 , wherein said first and second components occupy less volume than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
25 . The system of claim 19 , wherein the combined cost of said first and second components is less than the cost of said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
26 . The system of claim 19 , wherein said first energy storage component runs at a lower C-rate than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
27 . The system of claim 19 , wherein said first energy storage component operates at a lower temperature than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
28 . An electric or hybrid electric vehicle having design energy and power requirements, comprising:
first and second energy storage system components;
said first energy storage system component adapted to provide the primary energy (Watt hours) requirements of the application;
said second energy storage system component adapted to provide the primary power (Watts) requirements of the application;
wherein said first and second energy storage system components combined are less than the total energy requirements of a mono-electrochemistry battery pack adapted to supply both the power (W) and energy (Whr) design requirements of the application.
29 . The vehicle of claim 28 , wherein the application comprises an electric drive vehicle.
30 . The vehicle of claim 28 , wherein the vehicle comprises a hybrid electric-drive vehicle.
31 . The vehicle of claim 28 , wherein said first energy storage system component further comprises a Li-ion battery pack.
32 . The vehicle of claim 28 , wherein said second energy storage system further comprises a lead-acid battery component.
33 . The vehicle of claim 28 , wherein said first energy storage system component is a Li-ion battery pack and said second energy storage system component is a lead-acid battery pack.
34 . The vehicle of claim 28 , wherein said first and second components occupy less volume than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
35 . The vehicle of claim 28 , wherein the combined cost of said first and second components is less than the cost of said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
36 . The vehicle of claim 28 , wherein said first energy storage component runs at a lower C-rate than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.
37 . The vehicle of claim 28 , wherein said first energy storage component operates at a lower temperature than said single chemistry energy storage system adapted to provide both the design energy and power requirements of the application.