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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Analysis of the optimal location of magnetic field probes for thedetermination of the current distribution inside S/C cables
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Analysis of the optimal location of magnetic field probes for thedetermination of the current distribution inside S/C cables

机译:分析磁场探头的最佳位置以确定S / C电缆内部的电流分布

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During the tests on superconducting cables, the magnetic field is often measured by means of pick-up or Hall probes and these data are used to reconstruct the current distribution inside the cable. The efficiency and the accuracy of the reconstruction procedure depend on the algorithm adopted and on the location of the field probes. For a given geometry of the lines of current, the determination of the current distribution can be mathematically formulated as a linear inverse problem, in which the residual between the measured and the computed field values at the probe locations is minimised. A linear least-squares problem results, which is solved by means of the truncated singular value decomposition technique, applied to the matrix G which relates the unknown currents to the computed magnetic field values. The condition number of G is proposed here as an index of the quality of the location of the probes: a good location corresponds to a well conditioned G, while a bad location gives a worse conditioned matrix. In this paper a reconstruction procedure is presented and a criterion for the optimal probe positioning is shown
机译:在超导电缆的测试过程中,通常通过拾波器或霍尔探头测量磁场,这些数据用于重构电缆内部的电流分布。重建过程的效率和准确性取决于所采用的算法以及现场探头的位置。对于给定的电流线几何形状,电流分布的确定可以用数学公式表示为线性反问题,其中探针位置处的实测值和计算出的场值之间的残差最小。结果产生了线性最小二乘问题,该问题通过截断的奇异值分解技术得以解决,该问题被应用到将未知电流与计算出的磁场值相关联的矩阵G上。在此提出G的条件数作为探针位置质量的指标:良好的位置对应于条件良好的G,而不良的位置则对应于条件条件较差的矩阵。本文提出了一种重建程序,并给出了最佳探头定位的标准

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