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Polarimetric Optical Fibre Sensing for Plasma Current Measurement in Thermonuclear Fusion Reactors

机译:用于热核聚变反应堆中等离子体电流测量的极化光纤传感

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For plasma current sensing in next-generation Tokamak thermonuclear fusion reactors like ITER and DEMO, optical fibre-based polarimetric sensors appear to be an alternative to conventional technologies (Rogowski coils, pick-up coils) thanks to a direct measurement of the plasma current (the polarization rotation is proportional to the current) and to an expected robustness against radiations. Optical fibre sensors also offer the possibility to avoid the use of a large number of electrical cables required in conventional technologies. In this paper, we propose to summarize our last results in FOCS (Fibre-Optics Current Sensor) and POTDR (Polarization Optical Time-Domain Reflectometer) sensors based on spun and low birefringence fibres, respectively. This study will be contextualized in the frame of the future ITER fusion reactor. Experimental results obtained on the JET tokamak for the FOCS approach and the TORE SUPRA tokamak for the POTDR approach will also be presented.
机译:对于下一代托卡马克热核聚变反应堆(如ITER和DEMO)中的等离子体电流感测,由于直接测量等离子体电流(极化旋转与电流成正比,与预期的抗辐射强度成正比。光纤传感器还提供了避免使用常规技术所需的大量电缆的可能性。在本文中,我们建议总结分别基于旋转和低双折射光纤的FOCS(光纤电流传感器)和POTDR(偏振光时域反射仪)传感器的最新结果。这项研究将在未来的ITER聚变反应堆框架内进行背景介绍。还将介绍在FOCS方法的JET托卡马克和在POTDR方法的TORE SUPRA托卡马克上获得的实验结果。

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