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Stability boundary analysis in single-phase grid-connected inverters with PLL by LTP theory

机译:基于LTP理论的带锁相单相并网逆变器的稳定性边界分析

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摘要

Stability analysis of power converters in AC net¬works is complex due to the non-linear nature of the conversion systems. Whereas interactions of converters in DC networks can be studied by linearising about the operating point, the extension of the same approach to AC systems poses serious challenges, especially for single-phase or unbalanced three-phase systems. A general method for stability analysis of power converters suitable for single-phase or unbalanced AC networks is presented in this paper, based on Linear Time Periodic (LTP) theory. A single-phase grid-connected inverter with PLL is considered as case study. It is demonstrated that the stability boundaries can be precisely evaluated by the proposed method, despite the non-linearity introduced by the PLL. Simulation and experimental results from a 10kW laboratory prototype are provided to confirm the effectiveness of the proposed analysis.
机译:由于转换系统的非线性特性,交流网络中功率转换器的稳定性分析非常复杂。尽管可以通过线性化工作点来研究直流网络中转换器的交互作用,但是将相同方法扩展到交流系统会带来严峻的挑战,尤其是对于单相或不平衡三相系统。基于线性时间周期(LTP)理论,本文提出了一种适用于单相或不平衡交流网络的功率转换器稳定性分析的通用方法。带有PLL的单相并网逆变器被视为案例研究。结果表明,尽管PLL引入了非线性,但所提出的方法可以精确地评估稳定性边界。提供了10kW实验室原型的仿真和实验结果,以确认所提出分析的有效性。

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