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Suppression of Circulating Currents for Paralleled Three-Level T-Type Inverters Under Unbalanced Operating Conditions

机译:不平衡工作条件下并联三电平T型逆变器的循环电流抑制

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Paralleled three-level T-type inverters (3LT2Is) have the merits of high power rating, improved reliability and convenient maintenance. However, there exists circulating current which will lead to current distortion and increased system losses. Especially in unbalanced operating conditions, the circulating current is even more serious, and the conventional control methods are difficult to reduce the circulating currents. To overcome this drawback, a generalized model for analyzing circulating currents in parallel 3LT2Is under unbalanced conditions including unequal grid voltage amplitude and inductance imbalance is developed, and a novel deadbeat control scheme is proposed for the circulating current suppression with the advantages of easy to implement and no inter-module communication. Compared to the conventional methods, controller proposed by this paper is simpler in design and parallel expansion is easier while the influence of unbalanced operating conditions is eliminated. The effectiveness of the proposed method is verified by simulation and experiment results.
机译:并联三电平T型逆变器(3LT2I)具有额定功率高,可靠性提高和维护方便的优点。但是,存在循环电流,这将导致电流失真并增加系统损耗。特别是在不平衡的工作条件下,循环电流甚至更加严重,并且传统的控制方法难以减小循环电流。为了克服这个缺点,建立了一个通用模型,用于分析不平衡条件下并联3LT2Is的并联环流,包括不相等的电网电压幅值和电感不平衡,并提出了一种新颖的无差拍控制方案来抑制环流,该方案易于实现和实现。没有模块间通信。与常规方法相比,本文提出的控制器设计更简单,并行扩展更容易,同时消除了不平衡操作条件的影响。仿真和实验结果验证了该方法的有效性。

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