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Modeling and Analyzing the Mutual Inductance of Rogowski Coils of Arbitrary Skeleton

机译:Rogowski任意骨架线圈的互感建模与分析

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摘要

There are Rogowski coils of various shapes in the on-site measurement, and it is difficult to calculate the electrical quantities of Rogowski coils of curved skeleton and circular cross-section by simulation software. This paper proposes a theoretical derivation to calculate the mutual inductance between the conductors of any shape and Rogowski coils with skeletons of any shape. Based on the derivation, the influence of four skeleton shapes of Rogowski coils and four shapes of the primary conductors on the mutual inductance of Rogowski coils are studied by the comparison between the ideal cases and some non-ideal ones. The gap and gap compensation of the openable Rogowski coils are also considered. Experiments verify the numerical results according to the derivation. It is shown that to reduce the errors of the measurement the circular skeleton deformation should be avoided, the coil’s skeleton should be with curved angle, the primary conductor should be as straight as possible and should go through the center of the skeletons vertically. Furthermore, for the Rogowski coils of the rectangular skeleton, we propose a new skeleton structure to reduce the deviation influence of the primary conductors.
机译:现场测量中存在各种形状的Rogowski线圈,很难通过仿真软件计算出弯曲骨架和圆形截面的Rogowski线圈的电量。本文提出了一种理论推导来计算任何形状的导体与具有任何形状的骨架的Rogowski线圈之间的互感。在此推导的基础上,通过比较理想情况和一些非理想情况,研究了四种骨架形状的Rogowski线圈和四种初级导体形状对Rogowski线圈互感的影响。还考虑了可打开的Rogowski线圈的间隙和间隙补偿。实验根据推导验证了数值结果。结果表明,为减少测量误差,应避免圆形骨架变形,线圈骨架应具有弯曲角度,初级导体应尽可能笔直,并应垂直穿过骨架的中心。此外,对于矩形骨架的Rogowski线圈,我们提出了一种新的骨架结构,以减少初级导体的偏差影响。

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