1 |
KLASS V , BEHM M , LINDBERGH G . A support vector machine-based state-of-health estimation method for lithium-ion batteries under electric vehicle operation[J]. Journal of Power Sources, 2014, 270: 262-272.
|
2 |
WU J , ZHANG C , CHEN Z . An online method for lithium-ion battery remaining useful life estimation using importance sampling and neural networks[J]. Applied Energy, 2016, 173: 134-140.
|
3 |
WANG Y , ZHANG C , CHEN Z . An adaptive remaining energy prediction approach for lithium-ion batteries in electric vehicles[J]. Journal of Power Sources, 2016, 305: 80-88.
|
4 |
WANG Y J , ZHANG C B , CHEN Z H . On-line battery state-of-charge estimation based on an integrated estimator[J]. Appl. Energy, 2017, 185: 2026-2032.
|
5 |
LI Z , HUANG J , LIAW B Y , et al . On state-of-charge determination for lithium-ion batteries[J]. Journal of Power Sources, 2017, 348: 281-301.
|
6 |
陈德海, 华铭, 徐王娟, 等 . 优化安时积分法实时预测电动自行车电池SOC[J]. 电池, 2019, 49(1): 41-45.
|
|
CHEN Dehai , HUA MING , XU Wangjuan , et al . Real time prediction of SOC of E-bike battery by optimization of amperintegral method[J]. Battery Bimonthly, 2019, 49(1): 41-45.
|
7 |
孙艳艳, 周雪松, 游祥龙, 等 . 基于开路电压法的电池荷电状态估算修正[J]. 内燃机与配件, 2019(19): 225-226.
|
|
SUN Yanyan , ZHOU Xuesong , YOU Xianglong , et al . Estimation and correction of battery state of charge based on open circuit voltage method[J]. Internal Combustion Engine & Parts, 2019(19): 225-226.
|
8 |
徐劲力, 马国庆 . 基于UKF的在线锂离子电池SOC估算研究[J]. 电源技术, 2019, 43(10): 1615-1618+1644.
|
|
XU Jinli , MA Guoqing . SOC estimation of on-line Li-ion battery based on UKF[J]. Chinese Journal of Power Sources, 2019, 43(10): 1615-1618+1644.
|
9 |
姚和友, 张庭芳, 黄菊花, 等 . 改进的动量项BP神经网络电池SOC估算[J]. 电池, 2019, 49(4): 308-311.
|
|
YAO Heyou , ZHANG Tingfang , HUANG Juhua , et al . SOC estimation of battery based on improved momentum BP neural network[J]. Battery Bimonthly, 2019, 49(4): 308-311.
|
10 |
张佳倩, 刘志虎 . 基于模型参数辨识和扩展卡尔曼滤波的锂电池荷电状态估计[J]. 工业控制计算机, 2019, 32(9): 153-156.
|
|
ZHANG Jiaqian , LIU Zhihu . State of charge estimation of lithium battery based on model parameter identification and extended Kalman filter[J]. Industrial Control Computer, 2019, 32(9):153-156.
|
11 |
安治国, 田茂飞, 赵琳, 等 . 基于自适应无迹卡尔曼滤波的锂电池SOC估计[J]. 储能科学与技术, 2019, 8(5): 856-861.
|
|
AN Zhiguo , TIAN Maofei , ZHAO Lin , et al . SOC estimation of lithium battery based on adaptive traceless Kalman filter[J]. Energy Storage Science and Technology, 2019, 8(5): 856-861.
|
12 |
王震, 陆金桂 . 改进的ACO-BP神经网络在锂离子电池SOC估算中的应用[J]. 轻工学报, 2019, 34(4): 81-86.
|
|
WANG Zhen , LU Jingui . Estimation of SOC of lithium-ion battery based on ACO-BP neural network[J]. Journal of Light Industry, 2019, 34(4): 81-86.
|
13 |
朱江, 张伟, 马嵩 . 基于在线支持向量回归的锂离子电池SOC估计[J]. 电源技术, 2019, 43(10): 1611-1614.
|
|
ZHU Jiang , ZHANG Wei , MA Song . SOC estimation of Li-ion battery based on online support vector regression[J]. Chinese Journal of Power Sources, 2019, 43(10): 1611-1614.
|