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The research of parallel-connected power conversion system based on power series decoupling

机译:基于功率串联解耦的并联电源转换系统研究

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The energy storage system can operate in two modes, including grid-connected mode and islanding mode. The current sharing control of multiple parallel-connected energy storage subsystems is discussed in this paper. Firstly, the circuit configuration of parallel-connected energy storage system based on centralized control is introduced, and the equivalent model is established. Then the expressions of active and reactive circulating current in parallel system are deduced and analyzed. The result shows that the circulating current is related to the output voltage as well as parallel impedance, and can be suppressed by adjusting the output voltage. Moreover, considering the coupling between active and reactive circulation and the static error of impedance, a current sharing control strategy based on power series decoupling is proposed. The decoupling controller is designed and verified to have good robustness. The experimental results show that regardless of various loads, the proposed control method can not only maintain the stability of system voltage and frequency, but also has good static and dynamic current sharing accuracy.
机译:能量存储系统可以以两种模式操作,包括并网模式和孤岛模式。本文讨论了多个并联储能子系统的电流共享控制。首先,介绍了基于集中控制的并联储能系统的电路配置,并建立了等效模型。然后推导并分析了并联系统中有功和无功循环电流的表达式。结果表明,循环电流与输出电压以及并联阻抗有关,并且可以通过调节输出电压来抑制。此外,考虑到有功循环和无功循环之间的耦合以及阻抗的静态误差,提出了一种基于幂级数解耦的均流控制策略。去耦控制器经过设计和验证,具有良好的鲁棒性。实验结果表明,无论负载如何,所提出的控制方法不仅可以保持系统电压和频率的稳定性,而且具有良好的静态和动态均流精度。

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