综述和比较了限制单相无变压器光伏逆变器拓扑中漏电流的方法

W. Kołodziejski, J. Jasielski, S. Kuta, G. Szerszeń, W. Machowski
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引用次数: 0

摘要

无变压器逆变器广泛应用于不同的光伏非隔离交流模块应用,主要是在并网光伏(PV)发电系统中,因为它具有在大负载范围内实现高效率和低成本的优点。为了满足低地漏电流的安全要求,如VDE-4105标准和低输出交流失真,已经提出了各种无变压器逆变器拓扑结构。无变压器全桥逆变器的拓扑修改旨在平衡和保持恒定的共模输出电压,从而消除或减少泄漏电流。本文回顾并比较了全桥无变压器逆变器(如:H4、H5、H6、HERIC)已知拓扑结构中限制漏电流的不同方法及其改进。总结了无变压器方案中用于减少漏电流的主要拓扑结构和策略,突出其优点和缺点,并与类似拓扑结构建立比较点。为了比较不同中大功率逆变器的性能,采用igbt实现了光伏逆变器拓扑结构,并在PSPICE中使用相同的组件和相同的仿真参数进行了测试,以评估其在能效和漏电流特性方面的性能。详细介绍了功率级工作原理,扩展PWM调制器,以及逆变器所有igbt控制信号传输路径中具有电隔离的集成通用栅极驱动器,以及栅极驱动器的隔离和浮动偏置电源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review and comparison of methods for limiting leakage currents in single-phase transformerless PV inverter topologies
Transformerless inverters are widely used in different photovoltaic nonisolated ac module applications, mainly in grid-tied photovoltaic (PV) generation systems, due to the benefits of achieving high efficiency over a wide load range, and low cost. Various transformerless inverter topologies have been proposed to meet the safety requirement of low ground leakage currents, such as specified in the VDE-4105 standard and low-output ac-current distortion. Topology modifications of transformerless full bridge inverters are designed to balance and maintain a constant common mode output voltage, thereby eliminating or reducing leakage currents. This article reviews and compares the different methods for limiting leakage currents in known topologies of the full-bridge transformerless inverters, such as: H4, H5, H6, HERIC, and their improvements. The main topologies and strategies used to reduce the leakage current in transformerless schemes are summarized, highlighting advantages and disadvantages and establishing points of comparison with similar topologies. To compare the properties of different medium to high power inverters, PV inverter topologies were implemented using IGBTs and tested with the same components, same simulation parameters in PSPICE to evaluate their performance in terms of energy efficiency and leakage current characteristics. The detailed power stage operating principles, extended PWM modulator, and integrated universal gate driver with galvanic isolation in the transmission path of control signal for all IGBTs of the inverter, as well isolated and floating bias power supply for gate drivers are described.
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