1 |
Lithium-plating-free fast charging of large-format lithium-ion batteries with reference electrodes Liu JH, Chu ZY, Li HL, Ren DS, Zheng YJ, Lu LG, Han XB, Ouyang MG International Journal of Energy Research, 45(5), 7918, 2021 |
2 |
Optimized charging of lithium-ion battery for electric vehicles: Adaptive multistage constant current-constant voltage charging strategy Li YJ, Li KN, Xie Y, Liu JY, Fu CY, Liu B Renewable Energy, 146, 2688, 2020 |
3 |
Hybrid charging strategy with adaptive current control of lithium-ion battery for electric vehicles Jiang L, Li Y, Ma JM, Cao YJ, Huang C, Xu Y, Chen H, Huang YD Renewable Energy, 160, 1385, 2020 |
4 |
Contribution of country-specific electricity mix and charging time to environmental impact of battery electric vehicles: A case study of electric buses in Germany Rupp M, Handschuh N, Rieke C, Kuperjans I Applied Energy, 237, 618, 2019 |
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Influence of different battery charging strategies on residual grid power flows and self-consumption rates at regional scale Reimuth A, Prasch M, Locherer V, Danner M, Mauser W Applied Energy, 238, 572, 2019 |
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Effects of charging battery electric vehicles on local grid regarding standardized load profile in administration sector Blasius E, Wang ZQ Applied Energy, 224, 330, 2018 |
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Optimizing electric vehicle users' charging behavior in battery swapping mode Rao R, Zhang XP, Xie J, Ju LW Applied Energy, 155, 547, 2015 |
8 |
An improved PSO-based charging strategy of electric vehicles in electrical distribution grid Yang J, He LF, Fu SY Applied Energy, 128, 82, 2014 |
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A scenario of vehicle-to-grid implementation and its double-layer optimal charging strategy for minimizing load variance within regional smart grids Jian LN, Zhu XY, Shao ZY, Niu SX, Chan CC Energy Conversion and Management, 78, 508, 2014 |
10 |
Optimal decentralized valley-filling charging strategy for electric vehicles Zhang KK, Xu LF, Ouyang MG, Wang HW, Lu LG, Li JQ, Li Z Energy Conversion and Management, 78, 537, 2014 |