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Principles of Charge Estimation Methods Using High-Frequency Current Transformer Sensors in Partial Discharge Measurements

机译:局部放电测量中使用高频电流互感器的电荷估算方法原理

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摘要

This paper describes a simplified model and a generic model of high-frequency current transformer (HFCT) sensors. By analyzing the models, a universal charge estimation method based on the double time integral of the measured voltage is inferred. The method is demonstrated to be valid irrespective of HFCT sensor, assuming that its transfer function can be modelled as a combination of real zeros and poles. This paper describes the mathematical foundation of the method and its particularities when applied to measure nanosecond current pulses. In practice, the applicability of the method is subjected to the characteristics and frequency response of the sensor and the current pulse duration. Therefore, a proposal to use the double time integral or the simple time integral of the measured voltage is described depending upon the sensor response. The procedures used to obtain the respective calibration constants based on the frequency response of the HFCT sensors are explained. Two examples, one using a HFCT sensor with a broadband flat frequency response and another using a HFCT sensor with a non-flat frequency response, are presented.
机译:本文介绍了高频电流互感器(HFCT)传感器的简化模型和通用模型。通过对模型的分析,推导了基于被测电压的两倍时间积分的通用电荷估计方法。该方法被证明是有效的,与HFCT传感器无关,假设其传递函数可以建模为实数零点和极点的组合。本文介绍了该方法的数学基础及其在测量纳秒电流脉冲时的特殊性。实际上,该方法的适用性取决于传感器的特性和频率响应以及当前脉冲持续时间。因此,描述了根据传感器响应使用测量电压的两倍时间积分或简单时间积分的建议。解释了用于基于HFCT传感器的频率响应获取相应校准常数的过程。给出两个示例,一个示例使用具有宽带平坦频率响应的HFCT传感器,另一个示例使用具有非平坦频率响应的HFCT传感器。

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