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Theoretical Aspects of the Common-Mode Leakage Current Suppression in a Photovoltaic Power Generation System Based on Multi-Level H-Bridge Type Converters

机译:基于多级H桥型转换器的光伏发电系统中共模漏电流抑制的理论方面

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Now days, power generation systems (PGS) based on a solar photovoltaic modules (batteries) and semiconductor converters (PV PGS) are widely used. Recent studies conducted by the international energy agency (IEA) shows that most of the PV PGS used in grid applications. For reducing weight and size factors of PV PGS from its structure eliminate the transformer.Some estimates show that the transformer can occupy up to half the volume and reach half the weight and cost of PV PGS without solar photovoltaic modules. However, the elimination of the transformer leads to common-mode leakage current (CLC) occur, which flows through the parasitic elements of the PV PGS circuit. Common-mode leakage current can be cause of some type's equipment failure. The common-mode leakage current extremely difficult to suppress in some cases with PV PGS designed on H-bridge multilevel converters. The algorithmic capabilities of common-mode leakage current suppression in the PV PGS based on H-bridge type multilevel converters were considered in this paper. Obtained results were verified by simulation.
机译:如今,基于太阳能光伏模块(电池)和半导体转换器(PV PGS)的发电系统(PGS)已被广泛使用。国际能源机构(IEA)进行的最新研究表明,大多数PV PGS用于电网应用。为减少PV PGS的重量和尺寸,从结构上省去了变压器。一些估计表明,不使用太阳能光伏模块的变压器可以占据PV PGS的一半体积,重量和成本仅为其一半。但是,消除变压器会导致共模泄漏电流(CLC)发生,该电流流经PV PGS电路的寄生元件。共模泄漏电流可能是某种类型的设备故障的原因。在某些情况下,使用在H桥多电平转换器上设计的PV PGS很难抑制共模泄漏电流。本文考虑了基于H桥型多电平转换器的PV PGS中共模泄漏电流抑制的算法功能。得到的结果通过仿真验证。

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