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Feasibility Analysis of a Novel Cell Equalizer Topology for Plug-In Hybrid Electric Vehicle Energy-Storage Systems

机译:插电式混合动力汽车储能系统新型单元均衡器拓扑的可行性分析

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To meet the stringent cost targets for hybrid electric, plug-in hybrid electric (PHEV), and all-electric vehicles, serious improvement in battery cycle life and safety is undoubtedly essential. More recently, lithium batteries, in the form of lithium-ion, lithium-polymer, or lithium iron phosphate, have profoundly been explored. Despite critical research initiatives, lithium-based batteries have not yet been able to meet the steep energy demands, long lifetime, and low cost, which are unique to vehicular-propulsion applications. One of the most practical techniques of improving overall performance is to use suitable power electronics intensive cell-voltage equalizers in conjunction with onboard energy-storage devices. There have been some interesting developments in this area during the last few years, but cost constraints and high current specifications have prevented the complete deployment of this versatile technology. The purpose of this paper is to introduce a novel configuration for a cell-voltage equalizer, with the potential of fulfilling the expectations of low cost, high current capability, and high efficiency. A comprehensive comparison between the theoretical novel equalizer, a typical equalizer, and the experimental prototype of the novel equalizer will be presented, which will help analyze performance, complexity, and cost.
机译:为了满足混合动力,插电式混合动力(PHEV)和全电动汽车的严格成本目标,毫无疑问,电池循环寿命和安全性的显着提高至关重要。最近,已经深入地研究了锂离子,锂聚合物或磷酸铁锂形式的锂电池。尽管进行了关键的研究计划,锂基电池仍无法满足陡峭的能源需求,长寿命和低成本,而这正是车辆推进应用所独有的。改善整体性能的最实用的技术之一是将合适的功率电子密集型电池电压均衡器与车载储能设备结合使用。在过去的几年中,该领域出现了一些有趣的发展,但是由于成本限制和高电流规格,无法完全部署这种多功能技术。本文的目的是介绍一种新颖的电池电压均衡器配置,它有可能满足低成本,高电流能力和高效率的期望。将对理论上的新型均衡器,典型的均衡器和新型均衡器的实验原型进行全面比较,这将有助于分析性能,复杂性和成本。

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