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The role of diodes in the leakage current suppression mechanism of decoupling transformerless PV inverter topologies

机译:二极管在去耦无变形光伏逆变器拓扑漏电流抑制机构中的作用

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Conventional DC/AC inverters used for the integration of photovoltaic (PV) energy sources to the utility grid are known to give rise to ground leakage currents, which can damage the PV cells and cause safety hazards. A modern solution to the leakage current problem is offered by transformerless PV inverter topologies. This paper focuses on the class of decoupling transformerless topologies and provides a complete explanation of their leakage current suppression mechanism, by considering the commonly neglected role of the inverter diodes. It is demonstrated that, apart from additional semiconductor switches, the diodes are essential for achieving leakage current suppression, while the leakage current that flows through them radically affects the waveform of the inverter common-mode voltage. The presented analysis is supported by simulation results in MATLAB-Simulink.
机译:众所周知,用于将光伏(PV)能源集成到实用电网的常规DC / AC逆变器可引起接地漏电流,这可能会损害PV电池并引起安全危险。 无变压器PV逆变器拓扑提供了对漏电电流问题的现代解决方案。 本文专注于去耦无变形拓扑的类,并通过考虑逆变器二极管的通常被忽视的作用,提供了对漏电电流抑制机制的完全解释。 据证明,除了额外的半导体开关外,二极管对于实现漏电流抑制是必不可少的,而流过它们的漏电流会从根本上影响逆变器共模电压的波形。 Matlab-Simulink的仿真结果支持呈现的分析。

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