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Analysis and Design of a Digital Phase-Locked Loop for Single-Phase Grid-Connected Power Conversion Systems

机译:单相并网功率转换系统数字锁相环的分析与设计

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A new digital phase-locked-loop (DPLL) method is proposed for single-phase grid-connected power conversion systems in this paper. The analysis of a phase detector using trigonometric function transformation is presented in detail. A sliding-window-based data sampling method is utilized to obtain the orthogonal signal related to the original input signal according to the periodic characteristic of the steady-state sine fundamental component, and the fictitious active and reactive power components are constructed. On this basis, the DPLL method is developed. It consists of an even harmonics elimination network, a grid voltage feedforward network, and a fictitious instantaneous power feedback phase correction network. The fundamental signal of the grid voltage is extracted by an even harmonics elimination network and a digital Butterworth filter and a unit value controller to generate a unity sine reference signal for the feedforward network, whereas only the signs of the fictitious instantaneous active and reactive powers are used to revise the phase shift of the unity sine reference signal by means of a real-time variable step-size control in the feedback phase correction network. The method is validated to have good dynamic and static performances through MATLAB simulations, simulator investigations, and experiments with a grid-connected photovoltaic system under different voltage conditions.
机译:本文针对单相并网功率转换系统提出了一种新的数字锁相环(DPLL)方法。详细介绍了使用三角函数变换的鉴相器分析。利用基于滑动窗口的数据采样方法,根据稳态正弦基波分量的周期特性,得到与原始输入信号有关的正交信号,并构造了虚拟的有功和无功分量。在此基础上,开发了DPLL方法。它由偶次谐波消除网络,电网电压前馈网络和虚拟瞬时功率反馈相位校正网络组成。电网电压的基本信号由偶数谐波消除网络,数字Butterworth滤波器和单位值控制器提取,以为前馈网络生成单位正弦参考信号,而仅虚构的瞬时有功功率和正态功率的符号是用于通过反馈相位校正网络中的实时可变步长控制来修改统一正弦参考信号的相移。通过MATLAB仿真,仿真器研究以及在不同电压条件下并网光伏系统进行的实验,验证了该方法具有良好的动态和静态性能。

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