Quasi-Z-Source Four-Switch Three-Phase Inverter With Split Capacitor DC-Link Voltage Input

Izni Binti Mustafar, Naziha Binti Ahmad Azli, Norjulia Binti Mohamad Nordin
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Abstract

This paper proposes a new quasi-Z-source (QZS) four-switch three-phase inverter (FSTPI) where one load phase is connected to the split DC-link capacitor of the input voltage. Compared to the conventional QZS-FSTP topology, the proposed topology eliminates the LC component's instability in the QZS network thus making it suitable for a fault-tolerant control system. Furthermore, the proposed topology does not require any additional active switches. The switching modulation technique is designed to control the proposed topology where a DC-link voltage compensation is introduced in the modulation algorithm. This technique minimizes the output voltage imbalance by sensing the split DC-link voltage error and adjusting the switching algorithm accordingly. The dynamic performance of the proposed topology is evaluated in MATLAB/Simulink environment. It is shown that by using the proposed topology; there is an improvement on the line-to-line output voltage, and reduction in the total harmonic distortion of the line-to-line voltage compared to the previous topology. The proposed topology also produces a similar boost factor as the conventional QZS based on the six-switch three-phase inverter (SSTPI). The theoretical analysis based on the proposed topology are also in line with the simulation results.
分容直流电压输入的准z源四开关三相逆变器
本文提出了一种新的准z源(QZS)四开关三相逆变器(FSTPI),其中一个负载相连接到输入电压的分路直流电容上。与传统的QZS- fstp拓扑结构相比,所提出的拓扑结构消除了QZS网络中LC组件的不稳定性,从而使其适用于容错控制系统。此外,所建议的拓扑不需要任何额外的活动交换机。设计了开关调制技术来控制所提出的拓扑结构,其中在调制算法中引入了直流链路电压补偿。该技术通过检测分路直流电压误差并相应调整开关算法,最大限度地减少输出电压不平衡。在MATLAB/Simulink环境下对该拓扑结构的动态性能进行了评估。结果表明:采用所提出的拓扑结构;与以前的拓扑结构相比,在线对线输出电压上有了改进,并且减少了线对线电压的总谐波失真。所提出的拓扑结构也产生与基于六开关三相逆变器(SSTPI)的传统QZS相似的升压因数。基于所提拓扑的理论分析与仿真结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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