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Temperature-insensitive arrayed waveguide grating demodulation technique for fiber Bragg grating sensors

机译:光纤布拉格光栅传感器的温度不敏感阵列波导光栅解调技术

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摘要

As the output characteristics of arrayed waveguide grating (AWG) can be affected by temperature, the output spectrum central wavelength λ_i of every channel has a tendency to drift with the temperature. To improve demodulation accuracy, this paper presents a type of AWG demodulation algorithm with temperature compensation. This algorithm assumes that under the same environment, with similarly changing temperatures of AWG and fiber Bragg grating (FBG), the AWG central wavelength is replaced with the expression that includes ΔT, and the values of AWG and of FBG which change with the temperature (ΔT) are integrated. The experiment result shows that when temperature compensation is added in the demodulation technique, the correlation coefficient r of the demodulation result is 0.997, which means that the curve has good consistency and can be measured repeatedly. This also proves the rightness of the technique. The application of this technique for smart clothing is mentioned, which indicates its feasibility.
机译:由于阵列波导光栅(AWG)的输出特性会受到温度的影响,因此每个通道的输出光谱中心波长λ_i都有随温度漂移的趋势。为了提高解调精度,本文提出了一种带温度补偿的AWG解调算法。该算法假设在相同的环境下,当AWG和光纤布拉格光栅(FBG)的温度发生类似变化时,AWG中心波长被替换为包含ΔT的表达式,并且AWG和FBG的值随温度而变化( ΔT)被积分。实验结果表明,在解调技术中加入温度补偿后,解调结果的相关系数r为0.997,曲线具有较好的一致性,可以重复测量。这也证明了该技术的正确性。提到了该技​​术在智能服装中的应用,表明了其可行性。

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