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Analysis of RCD snubber based non-ideal Z-source inverter using average modelling approaches

机译:基于RCD缓冲的非理想Z源逆变器使用平均建模方法分析

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Z-Source inverters (ZSIs) are one of the most promising single-stage power converters in modern industrial applications. However, these ZSIs exhibit non-minimum phase behaviour as a result of right half-plane (RHP) zero in the converter transfer functions and impose a constraint on the controller design. A detailed mathematical model of the converter plays a crucial role in the design of an efficient control strategy. This paper presents a detailed mathematical model of non-ideal ZSI using averaged modelling approaches and its comparisons are summarised. The pole-zero and step response plots reveals the impact of parasitic elements and parameter variations on system steady-state and dynamic performance. Finally, the effects are outlined, which gives a basic guideline to the designers in the converter performance optimisation such as the feedback control bandwidth, damping factor, resonant frequency, and overshoot/undershoot in the desired output. The sensitivity function is defined for a voltage gain of ZSI with respect to system parasitic elements and snubber parameters. In order to validate the theoretical analysis of converter dynamics, a laboratory prototype model of 50 watts ZSI is developed. Further, a hardware implimentation of PID-based capacitor voltage control is shown to check the effectiveness of the derived transfer functions on closed-loop performance.
机译:Z源逆变器(ZSIS)是现代工业应用中最有前级电源转换器之一之一。然而,这些ZSIS在转换器传输函数中为右半平面(RHP)零产生的非最小相位行为,并对控制器设计施加约束。转换器的详细数学模型在高效控制策略的设计中起着至关重要的作用。本文介绍了使用平均建模方法的非理想ZSI的详细数学模型,并且总结了其比较。极值零和步进响应图揭示了寄生元件的影响和参数变化对系统稳态和动态性能的影响。最后,概述了效果,这给了转换器性能优化中的设计者提供了基本指南,例如反馈控制带宽,阻尼因子,谐振频率和在所需输出中的过冲/下冲。对于系统寄生元件和缓冲参数,为ZSI的电压增益定义了灵敏度函数。为了验证转换器动力学的理论分析,开发了50瓦ZSI的实验室原型模型。此外,示出了基于PID基电容器电压控制的硬件凝视,以检查导出的传输功能对闭环性能的有效性。

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