太阳能光伏应用三相并网晶闸管逆变器分析

Bilal Ahmad, Syed Muhammad Amrr, M. Nabi, M. R. Khalid, M. S. Jamil Asghar
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引用次数: 1

摘要

在线路换向的交直流逆变器/变换器的早期阶段,线路电流呈方形。它含有高次谐波,产生电磁感应,进而引起电力变压器或配电变压器铁芯发热。使用MOSFET/IGBT的基于简单脉宽调制的逆变器具有高开关损耗,与使用晶闸管/可控硅相比,它具有相当低的可靠性和功率处理能力。在基于晶闸管的逆变器中,由于换相电路的原因,脉宽调制是不可行的。在直流到交流转换中,希望输出波形尽可能像正弦波,谐波含量必须低。本文提出了一种控制开关角度的多电平逆变器拓扑结构,并采用三相交直流变换器电路进行逆变。由于存在自然换流,因此不需要单独的同步电路。本文对并网型三相12脉冲变换器进行了仿真。太阳能光伏系统并入直流电源。通过改变直流电源电压、电感和开关角度对变换器进行分析,以减小总谐波畸变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Three-Phase Grid-Tied Thyristor Based Inverter for Solar PV Applications
In the early phases of ac to dc inverters/ converters which were line commuted, the line current was square in shape. It contained higher order harmonics which generates electromagnetic induction which in turn causes heating of the core of power transformers or distribution transformers. Simple pulse width modulation based inverters which uses MOSFET/IGBT has high switching loss, and it has quite low reliability and the power handling capability in comparison to using thyristor/SCR. In case of thyristor-based inverters, pulse width modulation in not feasible due to commutation circuits. In dc to ac conversion, it is desired that the output waveform resembles a sine wave as much as possible and harmonic content must be low. In this paper, a multilevel inverter topology has been presented in which switching angle has been controlled and three phase ac to dc converter circuits are used in inversion mode. Since there is natural commutation, there is no requirement of a separate circuit for synchronization. In this paper, simulation is performed for grid tied three-phase 12 pulse converters. The solar PV systems are incorporated for DC source. The converter is analyzed by varying DC source voltage, Inductance and varying the switching angles so that the total harmonic distortion is reduced.
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