Lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering

The invention discloses a lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering, and the method comprises the following steps: carrying out the intermittent aging degree measurement and real-time calibration calculation processing, and achieving the capacity no...

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Main Authors CAO WEN, WANG SHUNLI, QI CHUANGSHI, ZHU YONGJIE, CHEN CHAO, LIU KE, CHEN LEI, HUANG YAN, HOU YAN, LI YANG, YU CHUNMEI, HOU PING, FAN YONGCUN
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LanguageChinese
English
Published 23.05.2023
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Abstract The invention discloses a lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering, and the method comprises the following steps: carrying out the intermittent aging degree measurement and real-time calibration calculation processing, and achieving the capacity normalization representation of lithium ion battery SOC estimation; on the basis of capacity normalization representation, an aging influence coefficient influenced by aging factors is obtained through calculation of an influence coefficient of an aging state on the electric quantity; on the basis of regular measurement and calibration, through synchronous acquisition and correction of a rated capacity and a cycle index related value, a function relationship of superposition cycle index correction is obtained; on the basis of aging influence coefficient and cycle index correction calculation, through combination of superposition calculation processing influenced by two factors, aging process characteristics of influe
AbstractList The invention discloses a lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering, and the method comprises the following steps: carrying out the intermittent aging degree measurement and real-time calibration calculation processing, and achieving the capacity normalization representation of lithium ion battery SOC estimation; on the basis of capacity normalization representation, an aging influence coefficient influenced by aging factors is obtained through calculation of an influence coefficient of an aging state on the electric quantity; on the basis of regular measurement and calibration, through synchronous acquisition and correction of a rated capacity and a cycle index related value, a function relationship of superposition cycle index correction is obtained; on the basis of aging influence coefficient and cycle index correction calculation, through combination of superposition calculation processing influenced by two factors, aging process characteristics of influe
Author QI CHUANGSHI
CAO WEN
ZHU YONGJIE
CHEN CHAO
HOU PING
FAN YONGCUN
LI YANG
CHEN LEI
YU CHUNMEI
HOU YAN
HUANG YAN
WANG SHUNLI
LIU KE
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– fullname: CHEN LEI
– fullname: HUANG YAN
– fullname: HOU YAN
– fullname: LI YANG
– fullname: YU CHUNMEI
– fullname: HOU PING
– fullname: FAN YONGCUN
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DocumentTitleAlternate 基于自适应球型无迹卡尔曼滤波的锂电池的SOC估计方法
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RelatedCompanies SICHUAN XINZHI LVNENG MEASUREMENT AND CONTROL TECHNOLOGY CO., LTD
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Snippet The invention discloses a lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering, and the method comprises the following...
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SubjectTerms MEASURING
MEASURING ELECTRIC VARIABLES
MEASURING MAGNETIC VARIABLES
PHYSICS
TESTING
Title Lithium battery SOC estimation method based on adaptive spherical unscented Kalman filtering
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