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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Analysis of Harmonics and Ripple Current in Multi-module Converters with Increasing Number of Modules for High Power Applications
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Analysis of Harmonics and Ripple Current in Multi-module Converters with Increasing Number of Modules for High Power Applications

机译:随着大功率应用中模块数量的增加,多模块转换器中的谐波和纹波电流分析

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Controlled rectifiers are considered as the most important hardware part in the field of HVDC systems in transmission lines and can be used for a number of power electronics based system operation, control and utility applications. In this paper, a brief design of a 12-pulse, 24-pulse, 36-pulse and a 48-pulse converter connected to the grid is presented along with the harmonic and ripple current analysis with its comparison statistics and thus providing a justification for the suitable ones. The performance of the 12, 24, 36 and 48-pulse converters are compared for their effectiveness in both quantitatively as well as qualitatively. Further, comparison of the 48-pulse converter on its THD and current ripple which is connected towards the grid with simple pulse width modulation technique is also proposed. It combines all features of the low switching concepts and DC current re-injection techniques. Some basic topological explanation of the controlled rectifiers and simulation results using MATLAB are also presented in this paper in order to justify the harmonic analysis. The simulation results along with the quantitative results shows the effectiveness of the proposed scheme for the cancelation or the elimination of the harmonics result in maximum harmonic mitigation, for high power utility applications, the 48-pulse converter is most fitting to improve the conversion efficiency, low di/dt and dv/dtand active and reactive power controllability.
机译:可控整流器被认为是输电线路HVDC系统领域中最重要的硬件部分,可用于许多基于电力电子的系统操作,控制和公用事业应用。本文介绍了与电网连接的12脉冲,24脉冲,36脉冲和48脉冲转换器的简要设计,以及谐波和纹波电流分析及其比较统计数据,从而为合适的。比较了12脉冲,24脉冲,36脉冲和48脉冲转换器的性能,无论是定量还是定性。此外,还提出了比较48脉冲转换器的THD和通过简单的脉冲宽度调制技术连接到电网的电流纹波的方法。它结合了低开关概念的所有功能和直流电流再注入技术。为了证明谐波分析的合理性,本文还介绍了可控整流器的一些基本拓扑解释以及使用MATLAB进行的仿真结果。仿真结果和定量结果表明,该方案对于消除或消除谐波以最大程度地降低谐波的效果是有效的,对于高功率公用事业应用,48脉冲转换器最适合提高转换效率,低di / dt和dv / dt以及有功和无功功率可控性。

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