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Design, Testing, and Validation of a Simplified Control Scheme for a Novel Plug-In Hybrid Electric Vehicle Battery Cell Equalizer

机译:一种新型插电式混合动力电动汽车电池均衡器的简化控制方案的设计,测试和验证

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摘要

In order to meet cost targets for hybrid electric (HEV), plug-in hybrid electric (PHEV), and all-electric vehicles (EV), an improvement in the battery life cycle and safety is essential. Recently, lithium batteries, in the form of lithium-ion, lithium-polymer, or lithium iron phosphate have been explored. Despite research initiatives, lithium-based batteries have not yet been able to meet steep energy demands, long lifetime, and low cost of vehicular propulsion applications. One practical approach to improve performance is to use power electronics intensive cell voltage equalizers, in conjunction with on-board energy storage devices. The purpose of this paper is to introduce a simplified control scheme, based on open-circuit voltage estimation, for a novel cell equalizer configuration, with the potential to fulfil expectations of the following: 1) low cost; 2) large currents; and 3) high efficiency. Issues, such as the limitations on maximum and minimum cell voltage, noise, and quantization errors, are explored. Finally, a comprehensive comparison between the theoretical test results and practical equalization test results is presented.
机译:为了达到混合动力(HEV),插电式混合动力(PHEV)和全电动汽车(EV)的成本目标,必须提高电池寿命和安全性。近来,已经研究了锂离子,锂聚合物或磷酸铁锂形式的锂电池。尽管有研究计划,锂基电池仍无法满足陡峭的能源需求,较长的使用寿命以及低成本的车辆推进应用。一种提高性能的实用方法是将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。本文的目的是介绍一种基于开路电压估计的简化控制方案,该方案适用于新型电池均衡器配置,有可能满足以下期望:1)低成本; 2)大电流; 3)效率高。探索了诸如最大和最小电池电压,噪声和量化误差的限制等问题。最后,对理论测试结果与实际均衡测试结果进行了全面比较。

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