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Journal ArticleDOI

Control oriented 1D electrochemical model of lithium ion battery

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TLDR
In this paper, a state variable model for Li-ion battery discharge/charge behavior is presented. But the model is based on a nonlinear CFD model of a 6 Ah battery and the model output equation is derived on a local, electrode-averaged and distributed basis.
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This article is published in Energy Conversion and Management.The article was published on 2007-09-01. It has received 396 citations till now. The article focuses on the topics: State of charge & Lithium-ion battery.

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Journal ArticleDOI

Modeling and Simulation of Lithium-Ion Batteries from a Systems Engineering Perspective

TL;DR: In this paper, a review of the modeling and simulation of lithium-ion batteries and their use in the design of better batteries is presented and likely future directions in battery modeling and design including promising research opportunities are outlined.
Journal ArticleDOI

Algorithms for Advanced Battery-Management Systems

TL;DR: In this paper, the authors present a detailed description and model of a Li-ion battery, which is based on using electrochemical principles to develop a physics-based model in contrast to equivalent circuit models.
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Safety focused modeling of lithium-ion batteries: A review

TL;DR: A review of significant modeling works performed in the area with a focus on the characterization of the thermal runaway hazard and their relating triggering events is presented in this article, where progress made in models aiming at integrating battery ageing effect and related physics is also discussed.
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Critical Review on the Battery State of Charge Estimation Methods for Electric Vehicles

TL;DR: The review presents the key feedback factors that are indispensable for accurate estimation of battery SoC, and presents the possible recommendations for the development of next generation of smart SoC estimation and battery management systems for electric vehicles and battery energy storage system.
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A review on electric vehicle battery modelling: From Lithium-ion toward Lithium–Sulphur

TL;DR: In this paper, the authors reviewed and discussed various battery modelling approaches, including mathematical models, electrochemical models and electrical equivalent circuit models, and concluded that the state-of-the-art in battery modelling is not sufficient for this chemistry, and new modelling approaches are needed.
References
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Book

Linear System Theory and Design

TL;DR: Striking a balance between theory and applications, Linear System Theory and Design, 3/e, is ideal for use in advanced undergraduate/first-year graduate courses in linear systems and multivariable system design in electrical, mechanical, chemical, and aeronautical engineering departments.
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Modeling of Galvanostatic Charge and Discharge of the Lithium/Polymer/Insertion Cell

TL;DR: In this article, the galvanostatic charge and discharge of a lithium anode/solid polymer separator/insertion cathode cell is modeled using concentrated solution theory, which is general enough to include a wide range of polymeric separator materials, lithium salts, and composite insertion cathodes.
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Accurate electrical battery model capable of predicting runtime and I-V performance

TL;DR: An accurate, intuitive, and comprehensive electrical battery model is proposed and implemented in a Cadence environment that accounts for all dynamic characteristics of the battery, from nonlinear open-circuit voltage, current-, temperature-, cycle number-, and storage time-dependent capacity to transient response.
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Extended Kalman filtering for battery management systems of LiPB-based HEV battery packs: Part 3. State and parameter estimation

TL;DR: In this article, extended Kalman filtering (EKF) is used to estimate battery state-of-charge, power fade, capacity fade, and instantaneous available power for hybrid-electric-vehicle battery packs.
Journal ArticleDOI

Simulation and Optimization of the Dual Lithium Ion Insertion Cell

TL;DR: In this article, the galvanostatic charge and discharge of a dual lithium ion insertion (rocking chair) cell are modeled with concentrated solution theory, and the insertion of lithium into and out of active electrode material is simulated using superposition, greatly simplifying the numerical calculations.
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