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Analysis of the current distribution in the ITER CS-insert model coil conductor by self field measurements

机译:通过自电场测量分析ITER CS插入模型线圈导体中的电流分布

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Non-uniformities in the paths of the currents in a cable-in-conduit conductor (CICC), resistive or inductive, will result into an unbalanced current distribution. The current nonuniformity may affect the performance of a magnet system and it is therefore essential to evaluate this phenomenon. The current distribution in the Central Solenoid Insert Coil (CSIC) from the Central Solenoid Model Coil (CSMC) experiment is reconstructed from the four Hall-sensor voltages at the top and bottom joint of the CSIC. Four Hall sensors are used, near both joints at the extremities of the cable, to measure the self-field of the conductor. The inverse identification problem is solved in order to find the currents that match as close as possible to the set of measured data. Solutions are found for the current amplitudes in the six petals of the cable from the set of measurements of the tangential field component. Differences in the petal currents are found which rate up to a factor of two.
机译:电缆内导体(CICC)中的电流路径(电阻性或电感性)的不均匀性将导致电流分布不平衡。电流不均匀性可能会影响磁体系统的性能,因此必须评估此现象。中央电磁线圈模型(CSMC)实验中的中央电磁线圈(CSIC)中的电流分布是根据CSIC顶部和底部接头处的四个霍尔传感器电压重建的。在电缆末端的两个接头附近使用四个霍尔传感器来测量导体的自磁场。解决了逆识别问题,以便找到与测量数据集尽可能接近的匹配电流。从切向场分量的测量值集中可以找到电缆六个瓣中电流幅度的解。发现花瓣电流的差异高达两倍。

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