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Influences of input impedance of oscilloscope on the accuracy of switching overvoltage measuring system

机译:示波器输入阻抗对开关式过电压测量系统精度的影响

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摘要

The accuracy of switching overvoltage measuring system is significantly affected by the input impedance of oscilloscope. First, the principle of switching overvoltage is presented, followed by a brief introduction to the structure of measuring system. Using the laplace transform, the transfer function of the measuring system is then derived. Its frequency response, ranging from DC to 1 GHz, is investigated in detail. The influences of the input impedance on the amplitude and phase angle responses are clearly revealed. Two typical cases, i.e. unit step response and sinusoidal step response, are also considered in the study. To validate the above analysis, a series of experiments has been performed at a substation. Both the theoretical analysis and the experimental results indicate that the input impedance affects the accuracy of switching overvoltage measuring system significantly. In the case that the impedance is rather small, the voltage waveform displayed on oscilloscope would be considerably distorted from the one stressed on the line. The impedance should be greater than 107 Ω to satisfy the accuracy requirement. On the other hand, it can be also used as a direct indicator to assess the performance of oscilloscope.
机译:示波器的输入阻抗会严重影响开关过电压测量系统的精度。首先介绍了开关过电压的原理,然后简要介绍了测量系统的结构。然后使用拉普拉斯变换得出测量系统的传递函数。详细研究了其频率响应,范围从DC到1 GHz。清楚显示了输入阻抗对幅度和相位角响应的影响。在研究中还考虑了两种典型情况,即单位阶跃响应和正弦阶跃响应。为了验证上述分析,已在变电站进行了一系列实验。理论分析和实验结果均表明,输入阻抗会显着影响开关过电压测量系统的精度。在阻抗很小的情况下,示波器上显示的电压波形将与线路上承受的电压波形发生很大的失真。阻抗应大于107Ω,以满足精度要求。另一方面,它也可用作评估示波器性能的直接指标。

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