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Performance Improvement of Slow-Wave Rogowski Coils for High Impulse Current Measurement

机译:用于高脉冲电流测量的慢波Rogowski线圈的性能改进

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摘要

This paper presents the operating principles, design, and performance improvement and limitations of three slow-wave air-core Rogowski coils that enable plateau bandwidths up to 11 MHz and sensitivities of less than 0.25 V/kA to be achieved. The frequency response for these coils is examined to optimize the coil termination resistance in order to achieve the suitable transit time, minimize the droop effect, and achieve desired bandwidth. In the present design, the coil inductance is increased to compensate for the resulting reduction in the sensitivity due to the coil termination resistance. Oscillatory and overdamped unidirectional current waveforms up to 10 kA peak value are generated by using different linear and nonlinear loads, and impulse current generator configurations. These high impulse currents are measured by different methods, namely, a commercial impulse current transformer (ICT), a commercial Rogowski coil (CRC), and the three newly designed self-integrating Rogowski coils. Distortion of the measured current pulses is studied by using the lumped-element model of Rogowski coil and its termination resistance, and the signal cable and its matching resistance. The optimal coil termination resistance is obtained under these impulses, and the linearity of all newly designed self-integrating Rogowski coils' output voltages are also investigated. Calibration results and a comparison between ICT, CRC, and the developed three coils for measurements of different high impulse currents demonstrate that the developed coils can accurately reproduce the actual waveform with a constant sensitivity over the desired bandwidth.
机译:本文介绍了三种慢波空心Rogowski线圈的工作原理,设计和性能改进以及局限性,这三个线圈可以实现高达11 MHz的平稳带宽和小于0.25 V / kA的灵敏度。检查这些线圈的频率响应,以优化线圈终端电阻,以实现合适的渡越时间,最小化下垂效应并获得所需带宽。在本设计中,增加了线圈电感以补偿由于线圈终端电阻而导致的灵敏度降低。通过使用不同的线性和非线性负载以及脉冲电流发生器配置,可产生高达10 kA峰值的振荡和过阻尼单向电流波形。这些高脉冲电流通过不同的方法进行测量,即商用脉冲电流互感器(ICT),商用Rogowski线圈(CRC)和三个新设计的自积分Rogowski线圈。利用Rogowski线圈的集总模型及其端接电阻,信号电缆及其匹配电阻,研究了所测电流脉冲的失真。在这些脉冲下可获得最佳的线圈端接电阻,并且还研究了所有新设计的自积分Rogowski线圈输出电压的线性。校准结果以及ICT,CRC和开发的用于测量不同高冲击电流的三个线圈之间的比较表明,开发的线圈可以在所需带宽上以恒定的灵敏度准确地再现实际波形。

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