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Single-Phase DVR with Semi-Z-Source Inverter for Power Distribution Network

机译:具有半Z源逆变器的单相DVR,用于配电网络

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摘要

A novel topology of single-phase dynamic voltage restorer (DVR) is proposed to compensate the load voltage during voltage sag and voltage swell events. The semi-Z-source converter is utilised in its inverter operating mode for this proposed topology. The reduction in the number of active switches in the inverter and also in the current conduction path without compromising the output voltage range is the merit of the semi-Z-source inverter-based DVR against the commonly used full-bridge inverter-based DVR. The load voltage contains harmonics within the permissible limits when the compensation is performed by the semi-Z-source inverter-based DVR. The need for the filter circuit is eliminated; hence, the magnitude difference and the phase shift in the inverter output voltage due to the filter circuit are not present in the semi-Z-source inverter-based DVR. The proposed topology is cheap compared to the full-bridge inverter-based DVR topology. The simulations performed in MATLAB/Simulink environment are presented to validate the performance of the proposed topology. A comparison between the semi-Z-source inverter-based DVR and full-bridge inverter-based DVR is presented in this paper. The novel topology of DVR using semi-Z-source inverter is proved to be a better solution to the full-bridge inverter-based DVR.
机译:提出了一种新颖的单相动态电压恢复器(DVR)拓扑结构,以在电压骤降和电压骤升事件期间补偿负载电压。对于这种拟议的拓扑结构,在其逆变器工作模式下使用了半Z源转换器。相对于常用的基于全桥逆变器的DVR,基于半Z源逆变器的DVR的优点在于减少了逆变器以及电流传导路径中有源开关的数量,而又不损害输出电压范围。当通过基于半Z源逆变器的DVR进行补偿时,负载电压中的谐波包含在允许的范围内。消除了对滤波电路的需求;因此,在基于半Z源逆变器的DVR中不存在由于滤波电路引起的逆变器输出电压的幅度差和相移。与基于全桥逆变器的DVR拓扑相比,提出的拓扑便宜。提出了在MATLAB / Simulink环境中执行的仿真,以验证所提出拓扑的性能。本文对基于半Z源逆变器的DVR和基于全桥逆变器的DVR进行了比较。事实证明,使用半Z源逆变器的新型DVR拓扑是基于全桥逆变器的DVR的更好解决方案。

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