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Universal Battery Active Equalizer Balancer Lithium Battery Balance Board 12‑16S Active Equalizer Module Lightweight Energy Transfer Board for LTO LPO LFP 1.8V‑4.5V

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A Review of Battery Equalizer Circuits for Electric Vehicle Applications" Energies 13, no. 21: 5688.

The gradual establishment and realization of the global energy Internet put forward higher requirements for the sustainable supply management and deployment of future electric energy, in which the large-scale energy storage technology is the cornerstone and plays a vitally important role in the modern industry ( Wei et al., 2019a). As a reliable energy storage device, lithium-ion batteries are widely utilized in scenarios such as new energy vehicles and energy storage power stations due to their high energy density and cyclable characteristics ( Song et al., 2017; Lin et al., 2018). Tashakor, N.; Farjah, E.; Ghanbari, T. A bidirectional battery charger with modular integrated charge equalization circuit. IEEE Trans. Power Electron. 2016, 32, 2133–2145. [ Google Scholar] [ CrossRef] Directly proportional to the energy to be equalized. In general is faster than the capacitor-based equalizers, since the current is controlled. The switched inductor topology is faster than the single inductor scheme since there are more storage devices to handle the transfers of energy.Half-Bridge Lithium-Ion Battery Equalizer Based on Phase-Shift Strategy" Sustainability 15, no. 2: 1349. Yan, X.; Nie, J.; Ma, Z.; Ma, H. Development status of balanced technology of battery management system of electric vehicle. In Proceedings of the International Workshop of Advanced Manufacturing and Automation, Plymouth, UK, 21–22 November 2019; pp. 504–510. [ Google Scholar] [ CrossRef] Reddy, K.R.; Meikandasivam, S.; Vijayakumar, D. A novel strategy for maximization of plug-In electric vehicle’s storage utilization for grid support with consideration of customer flexibility. Electr. Power Syst. Res. 2019, 170, 158–175. [ Google Scholar] [ CrossRef] Chen, Y.; Liu, X.; Cui, Y.; Zou, J.; Yang, S. A multiwinding transformer cell-to-cell active equalization method for lithium-ion batteries with reduced number of driving circuits. IEEE Trans. Power Electron. 2015, 31, 4916–4929. [ Google Scholar] Zheng, Y.; He, F.; Wang, W. A Method to Identify Lithium Battery Parameters and Estimate SOC Based on Different Temperatures and Driving Conditions. Electronics 2019, 8, 1391. [ Google Scholar] [ CrossRef][ Green Version]

Shang, Y.; Cui, N.; Zhang, C. An optimized any-cell-to-any-cell equalizer based on coupled half-bridge converters for series-connected battery strings. IEEE Trans. Power Electron. 2018, 34, 8831–8841. [ Google Scholar] [ CrossRef]Shang, Y.; Zhang, Q.; Cui, N.; Zhang, C. A cell-to-cell equalizer based on three-resonant-state switched-capacitor converters for series-connected battery strings. Energies 2017, 10, 206. [ Google Scholar] [ CrossRef] Xiong, R.; Cao, J.; Yu, Q.; He, H.; Sun, F. Critical review on the battery state of charge estimation methods for electric vehicles. IEEE Access 2017, 6, 1832–1843. [ Google Scholar] [ CrossRef]

Einhorn, M.; Conte, F.V.; Fleig, J. Improving of active cell balancing by equalizing the cell energy instead of the cell voltage. World Electr. Veh. 2010, 4, 400–404. [ Google Scholar] [ CrossRef][ Green Version] Editors select a small number of articles recently published in the journal that they believe will be particularlyD. Balthazar, C. Remy, D. Benjamin, A. Marot, I. Guyon, and M. Schoenauer, “Neural networks for power flow: graph neural solver,” Electric Power Systems Research, vol. 189, Article ID 106547, 2020.View at: Google Scholar

Daowd, M.; Omar, N.; Bossche, P.V.D.; Van Mierlo, J. Capacitor based battery balancing system. World Electr. Veh. 2012, 5, 385–393. [ Google Scholar] [ CrossRef][ Green Version]Directly proportional to the energy to be equalized. In general, it is faster than the capacitor-based equalizers since the current is controlled. The switched inductor topology is faster than the single inductor scheme since there are more storage devices to handle the transfers of energy.

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