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Accuracy and Reliability of Switching Transients Measurement with Open-Air Capacitive Sensors

机译:露天电容传感器测量开关瞬态的准确性和可靠性

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Contactless capacitive (open-air) sensors are applied to monitor overvoltages near overhead line terminations at a substation or at the transition from underground cables to overhead lines. It is shown that these sensors, applied in a differentiating/integrating measuring concept, can result in excellent characteristics in terms of electromagnetic compatibility. The inherent cross-coupling from open-air sensors to other phases is dealt with. The paper describes a method to calibrate the sensor to line coupling matrix based on assumed 50 Hz symmetric phase voltages and in particular focuses on uncertainty analysis of assumptions made. Network simulation shows that predicted maximum overvoltages agree within typically 7% compared to reconstructed values from measurement, also with significant cross-coupling. Transient voltages from energization of an (extra-)high voltage connection can cause large and steep rising ground currents near the line terminations. Comparison with results obtained by a capacitive divider confirms the intrinsic capability in interference rejection by the differentiating/integrating measurement methodology.
机译:非接触式电容式(露天)传感器用于监视变电站或从地下电缆到架空线的过渡处架空线终端附近的过电压。结果表明,在微分/积分测量概念中应用的这些传感器可以产生出色的电磁兼容性。处理了从露天传感器到其他相位的固有交叉耦合问题。本文介绍了一种基于假设的50 Hz对称相电压来校准传感器与线路耦合矩阵的方法,特别是着重于对假设的不确定性分析。网络仿真表明,与通过测量得到的重构值相比,预测的最大过电压通常在7%的范围内,并且具有明显的交叉耦合。 (超)高压连接的通电产生的瞬态电压会在线路终端附近引起大而陡峭的接地电流。通过与电容分压器获得的结果进行比较,可以通过微分/积分测量方法来确认抗干扰能力。

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