首页> 外文会议>2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia >Transformer-less bidirectional PWM converter integrating cell voltage equalizer using voltage multiplier for series connected energy storage cells
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Transformer-less bidirectional PWM converter integrating cell voltage equalizer using voltage multiplier for series connected energy storage cells

机译:无变压器双向PWM转换器,集成了使用电压倍增器的电池电压均衡器,用于串联的储能电池

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摘要

Traditional energy storage systems consisting of lithium-ion battery cells or electric double-layer capacitors (EDLCs) connected in series require a cell voltage equalizer in addition to a bidirectional PWM converter. The system is prone to complexity as two converters (i.e., the equalizer and bidirectional converter) are separately necessary. To simplify the systems, this paper proposes the transformer-less bidirectional PWM converter integrating a cell voltage equalizer using a voltage multiplier. An inductor in a conventional bidirectional PWM converter is replaced with series-connected inductors in the proposed converter in order to produce square wave voltage with an arbitrary amplitude, by which the voltage multiplier is driven. The voltage multiplier in the proposed integrated converter is essentially a switchless circuit, and therefore, the bidirectional converter and voltage equalizer can be integrated with no additional switch, reducing both the system and circuit complexities. The charge-discharge cycling test for nice EDLCs connected in series was performed using the proposed integrated converter from a voltage-imbalanced condition. The voltage imbalance was gradually eliminated while charge-discharge cycling, demonstrating the integrated functions.
机译:由双向串联的锂离子电池单元或双电层电容器(EDLC)组成的传统储能系统,除了双向PWM转换器外,还需要一个单元电压均衡器。该系统倾向于复杂,因为分别需要两个转换器(即,均衡器和双向转换器)。为了简化系统,本文提出了一种无变压器双向PWM转换器,该转换器集成了使用电压倍增器的单元电压均衡器。为了产生具有任意幅度的方波电压,通过驱动倍压器,在所提出的转换器中用串联的电感器代替了传统的双向PWM转换器中的电感器。所提出的集成转换器中的电压倍增器实质上是无开关电路,因此,双向转换器和电压均衡器可以集成在一起而无需额外的开关,从而降低了系统和电路的复杂性。使用建议的集成转换器,从电压不平衡的条件下,对串联好的EDLC进行了充放电循环测试。在充放电循环中逐渐消除了电压不平衡,证明了其集成功能。

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