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Implementation of Active NPC Circuits in Transformer-Less Single-Phase Inverter With Low Leakage Current

机译:低漏电流的无变压器单相逆变器中有源NPC电路的实现

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Transformer-less grid-connected photovoltaic (PV) systems face the challenge of keeping low leakage current due to their nonisolation configurations. To better attenuate the leakage current in the single-phase systems, a few neutral-point-clamped (NPC) topologies have been proposed. This paper further proposes an active NPC method by only employing one additional switch to connect the midpoint dc link and the freewheeling circuit of traditional single-phase PV inverters. After exploring the operational principles of freewheeling circuits, the construction method and the implementation of active NPC circuits in transformer-less single-phase inverters are elaborated in detail. Since only the leakage current flows through the additional NPC switch, the presented single-phase NPC inverters could still maintain the high operational efficiency with the further attenuated leakage current. The experimental results verified the theoretical findings.
机译:无变压器并网光伏(PV)系统由于其非隔离配置而面临保持低泄漏电流的挑战。为了更好地衰减单相系统中的泄漏电流,已经提出了几种中性点钳位(NPC)拓扑。本文还提出了一种有源NPC方法,该方法仅采用一个额外的开关来连接中点直流链路和传统单相PV逆变器的续流电路。在探讨了续流电路的工作原理之后,详细阐述了无变压器单相逆变器中有源NPC电路的构建方法和实现。由于只有泄漏电流流过附加的NPC开关,因此提出的单相NPC逆变器在泄漏电流进一步衰减的情况下仍可以保持较高的工作效率。实验结果验证了理论发现。

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