Motuz Rastislav, Leysen Willem, Moreau Philippe, Gusarov Andrei, Drexler Petr, Wuilpart Marc
Appl Opt. 2019 Apr 10;58(11):2795-2802. doi: 10.1364/AO.58.002795.
In this paper, we propose a theoretical study dedicated to the assessment of plasma current measurement in magnetic confinement fusion reactors using a polarization optical time-domain reflectometer (POTDR) setup with a low-birefringence fiber used as the sensing fiber. We consider the general case of a non-uniform magnetic-field distribution along the sensing fiber. The numerical simulations, based on Jones formalism taking into account the OTDR noise, provide the measurement error as a function of the plasma current. The measurement performance is evaluated for an ITER-relevant sensor configuration. We demonstrate that a signal-to-noise ratio of 6 dB, achievable in modern POTDRs, allows us to comply with the ITER requirements for plasma currents from 0 to 1 MA, while for the 1 to 20 MA range, the level is relaxed to 4 dB.
在本文中,我们提出了一项理论研究,致力于使用极化光时域反射仪(POTDR)装置,以低双折射光纤作为传感光纤,来评估磁约束聚变反应堆中的等离子体电流测量。我们考虑了沿传感光纤的磁场分布不均匀的一般情况。基于考虑了OTDR噪声的琼斯形式理论进行的数值模拟,给出了作为等离子体电流函数的测量误差。针对与ITER相关的传感器配置评估了测量性能。我们证明,现代POTDR中可实现的6 dB信噪比,能使我们满足ITER对0至1 MA等离子体电流的要求,而对于1至20 MA范围,该水平放宽至4 dB。