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Common mode voltage reduction of quasi-Z source indirect matrix converter

机译:准Z源间接矩阵转换器的共模降压

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Quasi-Z source indirect matrix converter (IMC) combines both advantages of conventional IMC and quasi-Z source inverter, for example, no direct current (DC) link capacitor, compact all-silicon power converter, bidirectional power flow, input power factor controllable, and high voltage gain; moreover, it does not require additional input filter, because continuous quasi-Z source network integrates LC filter function. However, there is no literature to disclose common mode voltage (CMV) issue of quasi-Z source IMC. In this paper, for the first time, the CMV issue and reduction of quasi-Z source IMC are investigated. Firstly, the CMV of quasi-Z source IMC is analyzed when using current typical modulation method, which follows the brief introduction of topology and modulation method for quasi-Z source IMC, and the factors that affect the CMV are figured out; Secondly, referring to the CMV reduction methods of conventional IMC, two solutions named as Methods I and II to reduce the CMV for quasi-Z source IMC are developed, which are achieved in the inverter stage; the third CMV reduction method is proposed in the rectifier stage through redefining the six sectors of the rectifier stage, which can implement zero current commutation. Experimental bench is built to test three approaches for reducing the CMV of quasi-Z source IMC. Comparative evaluation is carried out between three methods and conventional modulation method. Experimental results verify that three methods can significantly reduce the CMV of quasi-Z source IMC, with the CMV peak value reduction of 42%, but they present different features in terms of input and output current THDs, switching loss, CMV root mean square (RMS) value, modulation index limitation, and so on. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:准Z源间接矩阵转换器(IMC)结合了传统IMC和准Z源逆变器的优点,例如,无直流(DC)链接电容器,紧凑型全硅功率转换器,双向功率流,输入功率因数可控,电压增益高;此外,由于连续的准Z源网络集成了LC滤波器功能,因此不需要额外的输入滤波器。但是,没有文献公开准Z源IMC的共模电压(CMV)问题。本文首次研究了准Z源IMC的CMV问题和简化方法。首先,在对现有准调制方式下准Z源IMC的CMV进行分析的基础上,对准Z源IMC的拓扑结构和调制方法进行了简要介绍,并找出了影响准CM源IMC的因素。其次,参照传统IMC的CMV降低方法,提出了两种方法来降低准Z源IMC的CMV,分别在逆变器阶段实现。通过重新定义整流器级的六个扇区,在整流器级中提出了第三种CMV降低方法,可以实现零电流换向。建立了实验台来测试三种减少准Z源IMC的CMV的方法。在三种方法和常规调制方法之间进行比较评估。实验结果证明,三种方法可以显着降低准Z源IMC的CMV,使CMV峰值降低42%,但是它们在输入和输出电流THD,开关损耗,CMV均方根( RMS)值,调制指数限制等。版权所有(C)2015 John Wiley&Sons,Ltd.

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