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Design of Different Self-Integrating and Differentiating Rogowski Coils for Measuring Large-Magnitude Fast Impulse Currents

机译:用于测量大幅度快速脉冲电流的不同自积分微分Rogowski线圈的设计

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This paper presents the design and calibration of seven new Rogowski coils, namely, three air-cored coaxial-cable wound coils (RC1–RC3), one ferrite-cored varnished-wire wound coil (RC4), and three air-cored varnished-wire-wound coils (RC5–RC7). All coils are wound in a single layer and operated in the self-integrating mode, especially RC1–RC4. RC5–RC7 are mainly operated in the differentiating mode with external passive integrators. The designed seven coils are calibrated using different impulse currents up to 8.5 kA. These currents are simultaneously measured by different methods, namely, an impulse current transformer and a commercial Rogowski coil (ICT and CRC, respectively). Winding pitch advancement errors and magnetic fields into the plane of the coil are compensated by using a one-turn return loop placed inside the helical winding in the opposite direction to the pitch advancement for all coils except for RC4. It is found that all designed coils have a constant sensitivity of 0.2–4.4 V/kA over a certain bandwidth up to few MHz and with a very low sensitivity phase angle. For the self-integrating coils (RC1–RC3), increasing the number of turns and/or the former size enhances the coil response. For the differentiating coils with external integrators, the higher the integrator resistance and/or capacitance, the better the response (less droop effect and time shift) and the lower the sensitivity. The optimized termination resistance for the self-integrating coils and the integrator parameters for the differentiating coils enables the currents measured by RC3, RC4, and RC6 to have excellent agreement with those measured by ICT and CRC for different loads and levels without any droop effect.
机译:本文介绍了七个新型Rogowski线圈的设计和校准,即三个空心空心同轴绕线线圈(RC1-RC3),一个铁氧体空心漆包绕线线圈(RC4)和三个空心空心漆绕线。绕线线圈(RC5-RC7)。所有线圈均单层缠绕,并以自积分模式运行,尤其是RC1-RC4。 RC5-RC7主要通过外部无源积分器以差分模式工作。设计的七个线圈使用高达8.5 kA的不同脉冲电流进行校准。这些电流通过不同的方法同时测量,即脉冲电流互感器和商用Rogowski线圈(分别为ICT和CRC)。绕组螺距提前量误差和进入线圈平面的磁场可通过使用一个单匝返回回路来补偿,该回路在螺旋绕组内沿与RC4以外的所有线圈螺距提前量相反的方向放置。发现所有设计的线圈在高达几兆赫兹的特定带宽上具有0.2-4.4 V / kA的恒定灵敏度,并且具有非常低的灵敏度相角。对于自积分线圈(RC1-RC3),增加匝数和/或前者的尺寸会增强线圈响应。对于带有外部积分器的差分线圈,积分器的电阻和/或电容越高,响应越好(下垂效应和时移越小),灵敏度越低。自积分线圈的优化终端电阻和微分线圈的积分器参数使RC3,RC4和RC6测量的电流与ICT和CRC测量的电流在不同负载和水平下具有极佳的一致性,而没有任何下垂效应。

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