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首页> 外文期刊>Journal of Applied Geophysics >The mutual inductance calculation between circular and quadrilateral coils at arbitrary attitudes using a rotation matrix for airborne transient electromagnetic systems
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The mutual inductance calculation between circular and quadrilateral coils at arbitrary attitudes using a rotation matrix for airborne transient electromagnetic systems

机译:使用机载瞬变电磁系统的旋转矩阵,以任意姿态计算圆形和四边形线圈之间的互感

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摘要

Performance testing and calibration of airborne transient electromagnetic (ATEM) systems are conducted to obtain the electromagnetic response of ground loops. It is necessary to accurately calculate the mutual inductance between transmitting coils, receiving coils and ground loops to compute the electromagnetic responses. Therefore, based on Neumann's formula and the measured attitudes of the coils, this study deduces the formula for the mutual inductance calculation between circular and quadrilateral coils, circular and circular coils, and quadrilateral and quadrilateral coils using a rotation matrix, and then proposes a method to calculate the mutual inductance between two coils at arbitrary attitudes (roll, pitch, and yaw). Using coil attitude simulated data of an ATEM system, we calculate the mutual inductance of transmitting coils and ground loops at different attitudes, analyze the impact of coil attitudes on mutual inductance, and compare the computational accuracy and speed of the proposed method with those of other methods using the same data. The results show that the relative error of the calculation is smaller and that the speed-up is significant compared to other methods. Moreover, the proposed method is also applicable to the mutual inductance calculation of polygonal and circular coils at arbitrary attitudes and is highly expandable. (C) 2014 Elsevier B.V. All rights reserved.
机译:进行机载瞬变电磁(ATEM)系统的性能测试和校准,以获得接地回路的电磁响应。必须准确计算发射线圈,接收线圈和接地回路之间的互感,以计算电磁响应。因此,本研究根据诺伊曼公式和测得的线圈姿态,推导了利用旋转矩阵计算圆形与四边形线圈,圆形与圆形线圈以及四边形与四边形线圈之间互感的公式,并提出了一种计算方法。计算任意姿态(侧倾,俯仰和偏航)下两个线圈之间的互感。利用ATEM系统的线圈姿态仿真数据,我们计算了不同姿态下发射线圈和接地回路的互感,分析了线圈姿态对互感的影响,并将该方法的计算精度和速度与其他方法进行了比较。使用相同数据的方法。结果表明,与其他方法相比,计算的相对误差较小,并且提速明显。而且,该方法还适用于任意姿势下的多边形和圆形线圈的互感计算,具有很高的扩展性。 (C)2014 Elsevier B.V.保留所有权利。

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