太阳能光伏并网逆变器的多电平变换器拓扑

A. Sarwar, M. Asghar
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引用次数: 27

摘要

太阳能光伏并网逆变器用于直流-交流转换。传统的线路换向交直流逆变器的线路电流为方形,其中含有高次谐波。谐波含量高的线路电流不仅会产生电磁干扰,而且会使配电变压器铁芯发热。或者,使用MOSFET/IGBT开关的基于PWM的逆变器也用于相同的目的。然而,除了更高的开关损耗外,与晶闸管/可控硅相比,这些器件的功率处理能力和可靠性相当低。然而,传统的晶闸管强制换相逆变器由于换相电路的问题而不适合PWM应用。对于并网逆变器来说,具有低谐波含量的纯正弦线电流或波形是最理想的。在本工作中,提出并分析了各种多电平线路换向逆变器拓扑结构,这些拓扑结构改善了并网线路换向逆变器的波形,从而降低了线路电流的总谐波失真(THD)。该方案已成功实施和测试。此外,所提出的拓扑结构的性能远远优于传统的线换相逆变器。它降低了THD、损耗、开关应力和EMI。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multilevel converter topology for solar PV based grid-tie inverters
A solar PV based grid tie inverters are used for dc-ac conversion. The conventional line commutated ac-to-dc inverters have square-shaped line current which contains higher-order harmonics. The line current with the high harmonic contents generates EMI and moreover it causes more heating of the core of distribution/ power transformers. Alternatively, PWM based inverters using MOSFET/IGBT switches are also used for the same purpose. However, apart from higher switching losses, the power handling capability and reliability of these devices are quite low in comparison to thyristors/ SCR. Nevertheless, the conventional thyristor based forced commutated inverters are not suitable for PWM applications due to the problems of commutation circuits. A pure sinusoidal line current or waveform with low harmonic contents is the most desirable for grid tie inverters. In the present work, various multilevel line commutated inverter topologies has been proposed and analyzed which improves the wave shape and hence reduces the total harmonic distortion (THD) of the line current in a grid tie line commutated inverter. The scheme has successfully been implemented and tested. Moreover, the performance of the proposed topology is far better than the conventional line-commutated inverter. It reduces THD, losses, switching stress and EMI.
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