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Multi-ring compound fiber optic rotation measuring approach based on the Rayleigh Backscattering

机译:基于瑞利反向散射的多环复合光纤旋转测量方法

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A new structure of multi-ring compound fiber optic rotation velocity measurement approach was researched, in this paper, based on the single ring Rayleigh backscattering type fiber optic rotation sensing principle. N fiber optic ring cavities and N 2×2 single-mode optical fiber coupler were used in this new structure to build a model for measuring changes of scattering. The output signal of optical rotation sensor detected by optical time domain reflectometer was deduced and analyzed in digitization by MATLAB software. And then the structure parameters of the multi-ring cavity lengths and coupling ratios were optimized according to the characteristic of output signal. When the system was constructed based on the optimization simulation results in the same condition that parameters setting were N=3, range of rotate speed measure 0∼0.18rad/s and measurement accuracy 0.01rad/s, the feasibility of the system was verified by measuring the Rayleigh backscattering signal in different speed. The use of compound multiple ring cavities, compared with single ring, improved the measuring signal strength, increased the effective test data, which is helpful to identify.
机译:基于单环瑞利背散射式光纤旋转传感原理,研究了一种新型的多环复合光纤旋转速度测量方法。在这种新结构中,使用了N个光纤环形腔和N 2×2单模光纤耦合器来构建用于测量散射变化的模型。利用MATLAB软件推导并分析了光时域反射仪检测到的旋光传感器的输出信号并进行了数字化分析。然后根据输出信号的特性,优化多环腔长度和耦合比的结构参数。在优化模拟结果的基础上,在参数设置为N = 3,转速测量范围为0〜0.18rad / s,测量精度为0.01rad / s的条件下构建系统,通过以下方法验证了该系统的可行性。以不同的速度测量瑞利反向散射信号。与单环相比,复合多环腔的使用提高了测量信号强度,增加了有效测试数据,有助于识别。

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