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Independent Component Analysis for Signal Crosstalk Elimination in Infrared Interferometry

机译:红外干涉测量中信号串扰消除的独立分量分析

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摘要

Infrared interferometers are optical devices that can measure optical path-length differences by measuring changes in the refractive index. Several arrangements can be deployed, from single channel devices to multichannel double color heterodyne interferometers. These type of devices are typically used to recover the spatial electron density profile of fusion plasmas. This process involves measuring precisely the phase differences of the intermediate frequencies. A source of error that affects the measurements is the crosstalk that appears due to the coupling of the signals into the different channels of the interferometers. The inter-channel coupling of the signals is extremely difficult to eliminate specially when the probing frequencies are close to each other. In this paper it is shown that Independent Component Analysis effectively eliminates inter-crosstalk coupling in such devices. Furthermore, it is shown how the Signal-to-Noise ratio is dramatically increased when this technique is used.
机译:红外干涉仪是通过测量折射率的变化来测量光路长差异的光学装置。可以从单通道设备到多通道双色外差干涉仪的几个布置。这些类型的装置通常用于恢复融合等离子体的空间电子密度分布。该过程涉及精确地测量中间频率的相位差。影响测量值的错误源是由于信号耦合到干涉仪的不同通道而出现的串扰。当探测频率彼此靠近时,信号的间通道耦合非常难以特别难以消除。本文示出了独立的分量分析有效地消除了这种装置中的串扰耦合。此外,示出了在使用该技术时如何显着增加信噪比。

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