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Mitigation of DC-Link Current Ripple for Cascaded Current-Source-Converters Energy Conversion Systems

机译:级联电流源转换器能量转换系统的DC-Link电流纹波缓解

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In this paper, the optimized space vector modulation (SVM) strategy has been designed to reduce the DC-link current ripple in the cascaded current source converters (CSCs). The configuration of series CSCs is presented and a coordinated control scheme is applied for DC-link current regulation and achieving stable operation of the system. The key of DC-link current ripple mitigation is to design the pulse patterns of series current-source-rectifiers (CSRs) and series current-source-inverters (CSIs) collaboratively. Conventionally, the DC-link inductor is increased to reduce the current ripple. However, it will lead to bulky size, high cost, and slow dynamic response. Instead of that, this paper reveals that the DC-link current ripple can be significantly reduced by adjusting the pulse patterns of SVM between the cascaded CSRs and the CSIs. The simulation and experimental results verify the effectiveness of the proposed method.
机译:在本文中,设计了优化的空间矢量调制(SVM)策略,用于减小级联电流源转换器(CSC)中的直流链路电流纹波。提出了串联CSC的配置,并应用了协调的控制方案用于DC-Link电流调节并实现系统的稳定运行。 DC-Link电流纹波缓解的关键是设计Current-Source-Recifiers(CSR)和串联电流源 - 逆变器(CSIS)的脉冲模式。传统上,增加了直流链路电感器以减少电流纹波。然而,它将导致庞大的尺寸,高成本和动态响应慢。本文通过调整级联CSR和CSIS之间的SVM脉冲模式,可以显着降低DC连杆电流纹波。模拟和实验结果验证了该方法的有效性。

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