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An FPGA-based switching photovoltaic-connected inverter topology for leakage current suppression in grid-connected utilizations

机译:基于FPGA的开关光伏连接的逆变器拓扑,用于漏电流抑制网格连接的利用

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摘要

This study presents a symmetrical photovoltaic (PV)-connected inverter topology for eliminating the common-state leakage current in grid-connected inverters. A new inverter topology is introduced that minimizes the leakage current, increases efficiency, and is economically viable because it consists of six power switches and two power diodes that, compared with similar ones, consist of the same element numbers. In this inverter, power losses are lower than popular topologies such as H5, H6, and HERIC, and the voltage stresses of the switches are reduced. These features are due to the unique composition of the inverter branches and the location of the switches and diodes and the formation of a suitable freewheeling path for the current. The freewheeling path separates the alternating current (AC) side from the direct current side in the converter and cuts off the PV array leakage current to the AC grid. This will improve network reliability indices and maintain conservation standards. Finally, the content of this method is validated by comparing the proposed inverter with the existing conventional topologies. A prototype has been implemented for the performance analysis of the proposed inverter and results presented.
机译:该研究介绍了对称的光伏(PV)连接的逆变器拓扑,用于消除网格连接逆变器中的共同漏电电流。引入了新的逆变器拓扑,以最大限度地降低漏电流,提高效率,并且在经济上可行,因为它由六个电源开关和两个电源二极管组成,与类似元素组成的相同元素。在该逆变器中,功率损耗低于流行拓扑,例如H5,H6和雇员,并且减少了开关的电压应力。这些特征是由于逆变器分支的独特组成以及开关和二极管的位置以及用于电流的合适的续流路径。续流路径将交流(AC)侧与转换器中的直流侧分开,并切断PV阵列漏电流到AC电网。这将改善网络可靠性指标和维护保护标准。最后,通过将所提出的逆变器与现有的传统拓扑进行比较来验证该方法的内容。已经实施了原型,用于提交所提出的逆变器的性能分析和结果。

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