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首页> 外文期刊>Journal of Lightwave Technology >Performance Investigation of OFDR Sensing System With a Wide Strain Measurement Range
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Performance Investigation of OFDR Sensing System With a Wide Strain Measurement Range

机译:宽应变测量范围的OFDR传感系统的性能研究

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摘要

Spectrum registration and spatial calibration are presented and demonstrated in optical frequency domain reflectometry based sensing system for achieving a wide strain measurement range. In both dynamic and static measurement case, the feasibility of the proposed method is evaluated. First, spectrum registration is demonstrated to demodulate strain value, which increases the data acquisition rate dozens of times and also keep the high measurement range. A measurement rate up to 800 Hz is achieved. Second, the general difficulty in large strain measurement is analyzed. The combination of spatial calibration and spectrum registration is, therefore, proposed to reduce the mismatch of the spatial segments in the case of large strain variation. The local measurement spectrum segment extracted by a narrow box window for spectrum registration is proposed to maintain a high spatial resolution. Strain exceeding 7000 mu epsilon is demodulated with a gauge length of 5 mm accurately. Finally, graphic processing unit (GPU) technology is used to accelerate the data processing rate in the demodulation process, which makes it more hopeful for the practical application.
机译:光谱配准和空间校准在基于光频域反射仪的传感系统中进行了展示和演示,可实现较宽的应变测量范围。在动态和静态测量情况下,都对所提方法的可行性进行了评估。首先,证明了频谱配准可以解调应变值,这可以将数据采集速率提高数十倍,并且可以保持较高的测量范围。达到800 Hz的测量速率。其次,分析了大应变测量中的一般困难。因此,建议将空间校准和频谱配准相结合,以减少大应变变化情况下空间段的失配。提出了通过窄框窗口提取的局部测量频谱段以进行频谱配准,以保持较高的空间分辨率。应变超过7000亩的ε被精确地以5 mm的标距进行了解调。最后,图形处理单元(GPU)技术被用于加快解调过程中的数据处理速度,这使其在实际应用中更具希望。

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