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Three-stage Precise Converter in EV Charging-Discharging-Storage Integration Station

机译:EV充电放电集成站的三级精密转换器

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Converter in EV (electric vehicle) charging-discharging-storage integration station must satisfy the correlation objects. These include: lower harmonic and higher energy conversion efficiency, benefits to battery life, adaption to different batteries, and adjustable charging current. In this paper, we propose a three-stage circuit topology, based on precise charging control, which is able to accomplish these goals on a lithium ion polymer battery pack. It is expected that the converter will also work well on other battery chemistries. In order to use three-stage converter to charge precisely, we need to first design each stage circuit and control strategy. The final strategy can accurately capture the voltage of each DC bus and the charging current of a cell. We also give the analysis of factors affecting battery life and energy conversion efficiency, whereby the three-stage converter is in practice. Comparing with charging simulations of batteries in conventional converter, those in three-stage converter are conducted. Results are presented that that it is possible to achieve more precise charging in integrality of battery charging and extension of battery life than the conventional converter expected in an implementation.
机译:EV(电动车辆)的转换器(电动车)充电放电集成站必须满足相关对象。这些包括:较低的谐波和更高的能量转换效率,对电池寿命的益处,适应不同的电池,以及可调节的充电电流。在本文中,我们提出了一种基于精确的充电控制的三级电路拓扑,能够在锂离子聚合物电池组上实现这些目标。预计转换器还将在其他电池化学物质上工作。为了准确使用三级转换器来充电,我们需要首先设计每个级电路和控制策略。最终策略可以精确地捕获每个DC总线的电压和电池的充电电流。我们还探讨了影响电池寿命和能量转换效率的因素的分析,其中三级转换器实际上。与传统转换器中电池充电模拟相比,进行三级转换器中的电池。提出了结果,即可以在电池充电的完整性和电池寿命的整体中实现比传统转换器在实施中的传统转换器的整体上实现更精确的充电。

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