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A novel phase-locked loop applied on frequency fluctuation of EAST power supply

机译:应用新型锁相环,应用于东部电力频率波动

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摘要

The excellent performance of synchronous phase locked technology is the basis of improving the power quality of Experimental Advanced Superconducting Tokamak (EAST) power system. The conventional synchronous reference frame phase-locked loop (SRF-PLL) with low pass filter (LPF) has a poor filter capacity for the 2nd harmonic component as the fundamental frequency fluctuation due to the high-power, high-parameter operation of the EAST. To improve accuracy of the phase estimation, adaptive notch filter (ANF) will be introduced into the LSRF-PLL to reject the disturbance of 2nd harmonic component, which can adaptively track the fluctuation of fundamental frequency with least mean square (LMS) algorithm. A novel composite algorithm of LPF and ANF SRF-PLL (LASRF-PLL) is presented to suppress the disturbance of the frequency fluctuation and harmonic pollution. At the last, the performance of the proposed LASRF-PLL is finally validated by simulation results of MATLAB software.
机译:同步相位锁定技术的优异性能是提高实验高级超导Tokamak(东)电力系统的功率质量的基础。具有低通滤波器(LPF)的传统同步参考帧锁相环(SRF-PLL)具有差的过滤器容量,对于第二次谐波分量,由于高功率,高参数操作引起的基波频率波动。为了提高相位估计的精度,将引入自适应陷波滤波器(ANF),以拒绝第二谐波分量的干扰,这可以自适应地跟踪基本频率的基本频率(LMS)算法的波动。提出了一种新型的LPF和ANF SRF-PLL(LASRF-PLL)的复合算法,抑制了频率波动和谐波污染的干扰。最后,最终通过MATLAB软件的仿真结果验证了所提出的LASRF-PLL的性能。

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