1 |
An easy-to-implement multi-point impedance technique for monitoring aging of lithium ion batteries Zhou X, Pan ZQ, Han XB, Lu LG, Ouyang MG Journal of Power Sources, 417, 188, 2019 |
2 |
Zr-doped P2-Na0.75Mn0.55Ni0.25Co0.05Fe0.10Zr0.05O2 as high-rate performance cathode material for sodium ion batteries Li ZY, Gao R, Sun LM, Hu ZB, Liu XF Electrochimica Acta, 223, 92, 2017 |
3 |
Control strategies of domestic electrical storage for reducing electricity peak demand and life cycle cost Farah S, Whaley D, Saman W International Journal of Hydrogen Energy, 41(45), 20939, 2016 |
4 |
Simplification of physics-based electrochemical model for lithium ion battery on electric vehicle. Part I: Diffusion simplification and single particle model Han XB, Ouyang MG, Lu LG, Li JQ Journal of Power Sources, 278, 802, 2015 |
5 |
A comprehensive equivalent circuit model of all-vanadium redox flow battery for power system analysis Zhang Y, Zhao JY, Wang P, Skyllas-Kazacos M, Xiong BY, Badrinarayanan R Journal of Power Sources, 290, 14, 2015 |
6 |
Plates soaking prior formation and its influence on positive active material phase composition and battery performance Foudia M, Zerroual L, Matrakova M Journal of Power Sources, 191(1), 76, 2009 |
7 |
Influence of Mg2+, Al3+, Co2+, Sn2+ and Sb3+ on the electrical performance of doped beta-lead dioxide Chahmana N, Zerroual L, Matrakova M Journal of Power Sources, 191(1), 144, 2009 |
8 |
Computer-aided optimization of grid design for high-power lead-acid batteries Yamada K, Maeda K, Sasaki K, Hirasawa T Journal of Power Sources, 144(2), 352, 2005 |
9 |
Simulation study of electrical dynamic characteristics of lithium-ion battery Takano K, Nozaki K, Saito Y, Negishi A, Kato K, Yamaguchi Y Journal of Power Sources, 90(2), 214, 2000 |