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Interpreting and extending an analytical battery model using an iterative computation method

delete2007-01-01
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PRE
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郑能干 (Nenggan Zheng) *
吴朝晖 cover
吴朝晖 (Zhaohui Wu)
M
Man Lin
Q
Qijia Wang
DOI:10.1109/VLSID.2007.94delete
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Abstract

Abstract

En 中文
In this paper, we present an iterative computing method to illustrate the discharge, recovery and charge process of general lithium/lithium-ion batteries. The discharge and recovery processes correspond well to an existing accurate analytical battery model: the R-V-Ws analytical model, and thus interpret this model algorithmically. Our method also extends R-V-Ws model to accommodate the charge process. The work will help the system designers to grasp the characteristics of R-V-W's battery model. Experiments are performed on a variety of load profiles to show the accuracy of the extended model by comparing the predicted charge time with that derived from the DUALFOLL simulations.
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Journal

I
International Conference on VLSI Design Proceedings: Technology Challenges in the Nanoelectronics Era
IF:
0
Papers:
4
Citations:
0

Organization

S
saint francis xavier university - canada
Scholars:
761
Papers: 911
Citations: 0
Z
zhejiang university
Scholars:
17.6W
Papers: 12.1W
Citations: 152