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Accuracy of Switching Transients Measurement with Open-air Capacitive Sensors near Overhead Lines

机译:架空线附近使用露天电容式传感器进行开关暂态测量的精度

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Application of open-air sensors is an attractive option for detecting switching over-voltages as their installation does not interfere with operation of the lines. Drawback is that coupling strengths are not known beforehand and cross-coupling between a sensor near one phase and other phase conductors or even to other circuits affects the recordings. Calibration of the coupling matrix between phase voltages and sensor signals can be realized by relating the power frequency component in the recorded signals to a priori assumed base of symmetric phase voltages. This paper establishes a method to quantify the different causes for measurement uncertainties. The coupling matrix cannot be completely reconstructed from measurements, enforcing model assumptions which introduce uncertainties. Uncertainties arising from not perfect symmetric phase voltages and measurement equipment are investigated as well, but play a minor role when judging over-voltages on a per unit base. The methodology is presented for measurements at an overhead line to underground cable transition point and to a substation. At transition points, the sensors could be positioned such that the cross-coupling remains low and the resulting uncertainty in the determination of maximum per unit over-voltages is typically 2%. Despite the installation at the substation resulting in relatively strong cross-coupling, per unit over-voltages could still be determined with an accuracy within 10%.
机译:露天传感器的应用是检测开关过电压的一种有吸引力的选择,因为它们的安装不会干扰线路的运行。缺点是耦合强度是事先未知的,靠近一相的传感器与另一相导体甚至与其他电路之间的交叉耦合会影响记录。相电压和传感器信号之间的耦合矩阵的校准可以通过将记录信号中的工频分量与对称相电压的先验假设基础相关联来实现。本文建立了一种量化测量不确定性的不同原因的方法。耦合矩阵无法从测量值中完全重建,从而导致引入不确定性的模型假设。还研究了由于不理想的对称相电压和测量设备而引起的不确定性,但是在判断基于单位的过电压时起着很小的作用。提出了用于架空线到地下电缆过渡点和变电站的测量方法。在过渡点处,可以将传感器定位为使得交叉耦合保持较低,并且在确定每单位过电压的最大值时所产生的不确定性通常为2%。尽管安装在变电站中会产生相对较强的交叉耦合,但仍然可以确定每单位的过电压精度在10%以内。

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