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A Theoretical Study and Numerical Simulation of a Quasi-Distributed Sensor Based on the Low-Finesse Fabry-Perot Interferometer: Frequency-Division Multiplexing

机译:基于低Finesse法布里-珀罗干涉仪的准分布式传感器的理论研究和数值模拟:频分复用

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摘要

The application of the sensor optical fibers in the areas of scientific instrumentation and industrial instrumentation is very attractive due to its numerous advantages. In the industry of civil engineering for example, quasi-distributed sensors made with optical fiber are used for reliable strain and temperature measurements. Here, a quasi-distributed sensor in the frequency domain is discussed. The sensor consists of a series of low-finesse Fabry-Perot interferometers where each Fabry-Perot interferometer acts as a local sensor. Fabry-Perot interferometers are formed by pairs of identical low reflective Bragg gratings imprinted in a single mode fiber. All interferometer sensors have different cavity length, provoking frequency-domain multiplexing. The optical signal represents the superposition of all interference patterns which can be decomposed using the Fourier transform. The frequency spectrum was analyzed and sensor’s properties were defined. Following that, a quasi-distributed sensor was numerically simulated. Our sensor simulation considers sensor properties, signal processing, noise system, and instrumentation. The numerical results show the behavior of resolution vs. signal-to-noise ratio. From our results, the Fabry-Perot sensor has high resolution and low resolution. Both resolutions are conceivable because the Fourier Domain Phase Analysis (FDPA) algorithm elaborates two evaluations of Bragg wavelength shift.
机译:传感器光纤在科学仪器和工业仪器领域的应用由于其众多优点而非常有吸引力。例如,在土木工程行业中,由光纤制成的准分布式传感器用于可靠的应变和温度测量。这里,讨论了频域中的准分布式传感器。该传感器由一系列低精度的Fabry-Perot干涉仪组成,其中每个Fabry-Perot干涉仪都充当本地传感器。法布里-珀罗干涉仪由印在单模光纤中的成对的相同的低反射布拉格光栅组成。所有干涉仪传感器具有不同的腔长,从而引起频域多路复用。光学信号表示所有干涉图样的叠加,这些干涉图可以使用傅立叶变换进行分解。分析了频谱并定义了传感器的属性。随后,对准分布式传感器进行了数值模拟。我们的传感器仿真考虑了传感器特性,信号处理,噪声系统和仪器。数值结果表明分辨率与信噪比的关系。根据我们的结果,Fabry-Perot传感器具有高分辨率和低分辨率。这两种分辨率都是可以想到的,因为傅里叶域相位分析(FDPA)算法对布拉格波长偏移进行了两次评估。

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