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A DC Offset Current Compensation Strategy in Transformerless Grid-Connected Power Converters

机译:无变压器并网功率变换器中的直流偏置电流补偿策略

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摘要

A line frequency transformer is usually employed in grid-connected power converters, from both renewable and traditional energy sources, in order to suppress the DC current component and the ground leakage current. Solutions employing a high frequency transformer or employing no transformer at all have recently been investigated in order to reduce size, weight and cost. As a consequence, unless a suitable remedy is adopted, a DC current component exceeding the limits enforced by international standards may be injected into the grid. This paper proposes a simple and cheap solution to reduce the DC current component injected into the grid in the case of a full-bridge, single-phase, transformerless converter. The proposed strategy is intrinsically insensitive to offset measurement errors and can be utilized as a robust and dynamic offset compensator for the current transducer. The simulation results have confirmed the theoretical behavior of the proposed solution, while the experimental ones, performed for different values of output power and for different current control architectures, have shown its effectiveness.
机译:为了抑制直流电流分量和对地泄漏电流,通常在来自可再生能源和传统能源的并网功率转换器中采用线频变压器。为了减小尺寸,重量和成本,最近已经研究了采用高频变压器或根本不采用变压器的解决方案。结果,除非采取适当的补救措施,否则可能会将超过国际标准规定的限制的直流电流分量注入电网。本文提出了一种简单而廉价的解决方案,以减少全桥单相无变压器转换器中注入电网的直流电流分量。所提出的策略本质上对失调测量误差不敏感,可以用作电流传感器的鲁棒和动态失调补偿器。仿真结果证实了所提出解决方案的理论行为,而针对不同输出功率值和不同电流控制架构进行的实验表明了其有效性。

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