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Analysis and Design of Loop Gains to Optimize the Dynamic Performance of Optical Voltage Sensor Based on Pockels Effect

机译:基于Pockels效应优化光电压传感器动态性能的环路增益分析与设计

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摘要

A design method of loop gains is proposed for improving the fast dynamic tracking performance of optical voltage sensor (OVS) based on Pockels effect. The distribution principle of loop gains is investigated in theory according to the characteristics of closed-loop error of OVS. Based on the obtained distribution principle of loop gains, the hardware circuit and the control parameters of the controller are designed to improve the signal to noise ratio (SNR) of closed-loop error and the dynamic performance of OVS, respectively. The experimental results demonstrate that the system can achieve the high dynamic performance under the high detection precision: OVS can accurately track 13th harmonic with 1.57% measurement error and 4.24° phase error, and the long term steady accuracy of power frequency voltage is within ±0.1%. The experimental results validate the effectiveness of our new design method of loop gains.
机译:提出了一种基于Pockels效应的环增益设计方法,以提高光电压传感器的快速动态跟踪性能。根据OVS闭环误差的特点,从理论上研究了环路增益的分配原理。基于获得的环路增益分配原理,设计了控制器的硬件电路和控制参数,分别提高了闭环误差的信噪比(SNR)和OVS的动态性能。实验结果表明,该系统可以在较高的检测精度下实现较高的动态性能:OVS可以准确跟踪13次谐波,测量误差为1.57%,相位误差为4.24°,并且工频电压的长期稳定精度在±0.1以内。 %。实验结果验证了我们新的环路增益设计方法的有效性。

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