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Equalization of valve-regulated lead-acid batteries: issues and life test results
Sean West
,
Philip T. Krein
Grainger College of Engineering
Electrical and Computer Engineering
Coordinated Science Lab
Research output
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Conference article
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peer-review
Overview
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Dive into the research topics of 'Equalization of valve-regulated lead-acid batteries: issues and life test results'. Together they form a unique fingerprint.
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Keyphrases
State of Charge
100%
Life Test
100%
Valve-regulated Lead-acid Battery
100%
Passive Equalizer
100%
Switched Capacitor
66%
High Temperature
33%
Cellular Level
33%
Sensor Element
33%
Accelerated Life Test
33%
Charge Separation
33%
Voltage Difference
33%
Expected Lifetime
33%
External Voltage
33%
Equalization Techniques
33%
Active Equalization
33%
Battery Degradation
33%
Voltage Matching
33%
Charge Equalization
33%
Critical Results
33%
Magnetic Elements
33%
Voltage Equalization
33%
State of Charge Balancing
33%
Engineering
State of Charge
100%
Test Result
100%
Valve Regulated Lead Acid Battery
100%
Life Test
100%
Switched Capacitor
50%
Sufficient Time
25%
Material Science
State-of-Charge
100%
Valve Regulated Lead Acid Battery
100%
Capacitor
50%