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托卡马克中等离子体电流测量中光时域反射仪探测器噪声的理论评估。

Theoretical assessment of the OTDR detector noise on plasma current measurement in tokamaks.

作者信息

Motuz Rastislav, Leysen Willem, Moreau Philippe, Gusarov Andrei, Drexler Petr, Wuilpart Marc

出版信息

Appl Opt. 2019 Apr 10;58(11):2795-2802. doi: 10.1364/AO.58.002795.

Abstract

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.

摘要

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。

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