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Circulating Current Analysis and the Improved D–Σ Digital Control Strategy for Multiparalleled Three-Level T-Type Grid-Connected Inverters

机译:循环电流分析及改进的多面三级T型网格连接逆变器D-Σ数字控制策略

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摘要

An improved division-summation (D-) digital control strategy without high-speed communication is proposed in this paper. Unlike the traditional zero-sequence circulating current control method, the interphase circulating current suppression method is discussed and implemented on the basis of the single-phase equivalent circuit in this strategy. The generation mechanism of the interphase circulating current is emphatically analyzed. Output voltage compensation and virtual impedance compensation are studied and integrated with the D- digital control method to suppress the circulating current. Experimental platform with three paralleled three-level T-type grid-connected inverters has been set up. The experiments are carried out under the conditions of the impedance match or mismatch among the inverters, the unbalanced grid voltages, and the dynamic process such as start-up and step current change. The experimental results verify that the improved D- digital control strategy may effectively restrain the circulating current under various conditions.
机译:本文提出了一种改进的划分 - 总和(D-)数字控制策略,而不是高速通信。与传统的零序循环电流控制方法不同,基于该策略中的单相等效电路讨论和实施间隔循环电流抑制方法。重点分析了间循环电流的产生机制。用D-数字控制方法研究并集成了输出电压补偿和虚拟阻抗补偿以抑制循环电流。建立了具有三个并联三级T型网格连接逆变器的实验平台。实验在逆变器之间的阻抗匹配或不平衡的匹配或不平衡电网电压和动态过程的条件下进行,例如启动和台阶电流变化。实验结果验证了改进的D-数字控制策略可以有效地抑制各种条件下的循环电流。

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