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Control oriented 1D electrochemical model of lithium ion battery
Kandler A. Smith
,
Christopher D. Rahn
,
Chao Yang Wang
College of Engineering
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
416
Scopus citations
Overview
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Keyphrases
Bulk Concentration
33%
Cell Phone
33%
Charging Behavior
33%
Constant Current
33%
Control-oriented
100%
Current Profile
33%
Diverse Applications
33%
Efficient System
33%
Electrochemical Kinetics
33%
Electrochemical Model
100%
Electrode Surface
66%
Electrolyte Concentration
33%
Energy Storage
33%
Equation of State
33%
Frequency Space
33%
High Energy Density
33%
High Power Density
33%
Hybrid Electric Vehicle
66%
Ionic Conductivity
33%
Lithium-ion Battery
100%
Lower Order
33%
Model Output
33%
Nonlinearity
33%
Open Circuit Potential
33%
Orders Dynamics
33%
Partial Differential Equations
33%
Pulse Current
33%
Real Eigenvalues
33%
Reliable System
33%
State of Charge
33%
Surface Concentration
66%
System Integration
33%
Terminal Voltage
33%
Engineering
Balanced Realization
33%
Modal Form
33%
Oriented Control
100%
Output Equation
33%