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Bi-directional Zero-current Soft-switchingtechnique Applied For Bi-directional Dc-dcrnconverter In Energy Capacitor Systems

机译:双向零电流软开关技术在能量电容器系统中的双向DC-DCRN转换器中的应用

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摘要

In our previous work, we proposed the current-source energy capacitor system (CS-ECS), which consists of an electric double-layer capacitor, current-source inverter, and bi-directional four-quadrant DC-DC (FQ DC-DC) converter to control active/reactive power that can achieve the output leveling of wind energy system. However, this system had low conversion efficiency due to hard-switching losses. The improvement of conversion efficiency and performance are indispensable to implement the CS-ECS. This article proposes the soft-switched FQ DC-DC converter with a simple L-C resonant circuit for the CS-ECS. Since the insulated gate bipolar transistors of the converter softly turns on and off by using current-mode resonance, the conversion efficiency for the proposed system improves. In order to illustrate, the operating principle of the proposed system, we analyze the transition of conversion efficiency with charge and discharge operation in detail through a theoretical approach and computer simulations with MATLAB/SIMULINK and SimPowerSystems Toolbox.
机译:在之前的工作中,我们提出了电流源能量电容器系统(CS-ECS),该系统由双电层电容器,电流源逆变器和双向四象限DC-DC(FQ DC-DC)组成。 )转换器以控制有功/无功功率,可以实现风能系统的输出均衡。但是,由于硬开关损耗,该系统的转换效率低。转换效率和性能的提高对于实施CS-ECS是必不可少的。本文为CS-ECS提出了具有简单L-C谐振电路的软开关FQ DC-DC转换器。由于转换器的绝缘栅双极晶体管通过使用电流模式谐振来软导通和关断,因此所提出系统的转换效率得以提高。为了说明该系统的工作原理,我们通过理论方法以及使用MATLAB / SIMULINK和SimPowerSystems Toolbox进行的计算机仿真,详细分析了转换效率随充放电操作的转变。

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