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Algorithm of FBG Spectrum Distortion Correction for Optical Spectra Analyzers with CCD Elements

机译:CCD元件光谱分析仪FBG谱失真校正算法

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摘要

Nonlinear spectrum distortions are caused by the peculiarities of the operation of charge-coupled device elements (CCD), in which the signal exposition time (Time of INTegration–TINT) is one of the significant parameters. A change of TINT on a CCD leads to a nonlinear distortion of the resulting spectrum. A nonlinear distortion of the spectrum, in turn, leads to errors in determining the central wavelength of fiber Bragg gratings (FBGs) and spectrally sensitive sensors, which, in general, negatively affects the accuracy of the measuring systems. This paper proposes an algorithm for correcting the nonlinear distortions of the spectrum obtained on a spectrum analyzer using CCD as a receiver. It is shown that preliminary calibration of the optical spectrum analyzer with subsequent mathematical processing of the signal makes it possible to make corrections in the resulting spectrum, thereby leveling the errors caused by measurements at different TINT.
机译:非线性频谱失真是由电荷耦合器件元件(CCD)的操作的特性引起的,其中信号展示时间(集成时间的时间)是重要参数之一。 CCD上的色调的变化导致所得频谱的非线性变形。频谱的非线性变形又导致在确定光纤布拉格光栅(FBG)的中心波长和光谱敏感传感器时的误差,这通常是对测量系统的准确性产生负面影响。本文提出了一种校正使用CCD作为接收器在频谱分析仪上获得的频谱的非线性失真的算法。结果表明,光谱分析仪的初步校准具有随后的信号的数学处理使得可以在所得到的频谱中进行校正,从而调整由不同色调的测量引起的误差。

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