Baseline system design and prototyping for the ITER high-frequency magnetic diagnostics set

D. Testa, R. Chavan, J. Guterl, J. Lister, J. Moret, A. Perez, F. Sanchez, B. Schaller, G. Tonetti, M. Toussaint, A. Encheva, G. Vayakis, C. Walker, Y. Fournier, T. Maeder, H. Carfantan
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引用次数: 8

Abstract

This paper reports the mechanical and electrical tests performed for the prototyping of the ITER high-frequency magnetic sensor and the analysis of the measurement performance of this diagnostic. The current design for the sensor is not suitable for manufacturing for ITER due to the high likelihood of breakages of the un-guided tungsten wire during the winding. A number of alternative designs and manufacturing processes have been investigated, with the Low Temperature Co-fired Ceramic technology giving the best results. The measurement performance of the baseline system design for the high-frequency magnetic diagnostic cannot meet the intended ITER requirements due to its intrinsic spatial periodicities.
ITER高频磁诊断装置的基线系统设计和原型设计
本文报道了ITER高频磁传感器样机的机械和电气测试,并对该诊断的测量性能进行了分析。目前的传感器设计不适合制造ITER,因为在绕线过程中,非导向钨丝极有可能断裂。已经研究了许多替代设计和制造工艺,其中低温共烧陶瓷技术给出了最好的结果。高频磁诊断基线系统设计的测量性能由于其固有的空间周期性而不能满足ITER的预期要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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