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Phase-locked loop for grid-connected three-phase power conversion systems

机译:并网三相功率转换系统的锁相环

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摘要

Analysis and design of a phase-locked loop (PLL) is presented for the power factor control of grid-connected three-phase power conversion systems. The dynamic characteristics of the closed loop PLL system with a second order are investigated in both continuous and discrete-time domains, and the optimisation method is discussed. In particular, the performance of the PLL in the three- phase system is analysed under the distorted utility conditions such as the phase unbalancing, harmonics, and offset caused by nonlinear loads and measurement errors. The PLL technique for the three-phase system is implemented in software of a digital signal processor to verify the analytic results, and the experiments are carried out for various utility conditions. This technique is finally applied to the grid-connected photovoltaic power generation system with the current-controlled PWM inverter as a subpart for generating the current reference of the inverter. The experimental results demonstrate its phase tracking capability in the three-phase grid-connected operation.
机译:提出了锁相环(PLL)的分析和设计,用于并网三相功率转换系统的功率因数控制。研究了连续和离散时域二阶闭环PLL系统的动态特性,并讨论了优化方法。特别是,在失真的使用条件下分析了三相系统中PLL的性能,这些条件包括非线性负载和测量误差引起的相位不平衡,谐波和偏移。在数字信号处理器的软件中实现了用于三相系统的PLL技术,以验证分析结果,并针对各种使用条件进行了实验。最终,该技术被应用于以电流控制的PWM逆变器为子部分的并网光伏发电系统,以生成逆变器的电流参考。实验结果证明了其在三相并网运行中的相位跟踪能力。

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