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On the Equilibrium Points in Three-Phase PLL Based on the d-axis Voltage Normalization

机译:基于<斜斜体> D -XIS电压标准化的三相PLL的平衡点

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Voltage normalization is usually adopted for a phase-locked loop (PLL) to keep a constant bandwidth unaffected from the voltage magnitude at the point of synchronization. Two conventional PLL normalization methods are analyzed from a large-signal perspective in this letter. However, different from the voltage magnitude normalization method, an unexpected stable equilibrium point emerges in the three-phase PLL based on the d-axis voltage normalization, the mechanism of which is revealed by the phase-plane analysis. Due to the unexpected equilibrium point, the d-axis voltage normalization will lose the phase tracking ability when the initial phase difference or phase jump exceeds pi/2. Thus, it is suggested to use the magnitude normalization instead of the d-axis voltage normalization to avoid this kind of malfunction. Finally, the experimental results validate the theoretical analysis.
机译:通常用于锁相环(PLL)通常采用电压归一化,以保持与同步点的电压幅度不受影响的恒定带宽。 在这封信中的大信号视角分析了两个传统的PLL归一化方法。 然而,与电压幅度归一化方法不同,基于D轴电压归一化,三相PLL中出现意外的稳定平衡点,其机制由相面分析揭示。 由于意外的平衡点,当初始相位差或相位跳转超过PI / 2时,D轴电压归一化将失去相位跟踪能力。 因此,建议使用幅度归一化而不是D轴电压归一化以避免这种故障。 最后,实验结果验证了理论分析。

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