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Theoretical and Experimental Study on Wide Range Optical Fiber Turbine Flow Sensor

机译:宽范围光纤涡轮流量传感器的理论与实验研究

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摘要

In this paper, a novel fiber turbine flow sensor was proposed and demonstrated for liquid measurement with optical fiber, using light intensity modulation to measure the turbine rotational speed for converting to flow rate. The double-circle-coaxial (DCC) fiber probe was introduced in frequency measurement for the first time. Through the divided ratio of two rings light intensity, the interference in light signals acquisition can be eliminated. To predict the characteristics between the output frequency and flow in the nonlinear range, the turbine flow sensor model was built. Via analyzing the characteristics of turbine flow sensor, piecewise linear equations were achieved in expanding the flow measurement range. Furthermore, the experimental verification was tested. The results showed that the flow range ratio of DN20 turbine flow sensor was improved 2.9 times after using piecewise linear in the nonlinear range. Therefore, combining the DCC fiber sensor and piecewise linear method, it can be developed into a strong anti-electromagnetic interference(anti-EMI) and wide range fiber turbine flowmeter.
机译:在本文中,提出了一种新型的纤维涡轮流量传感器,并进行了演示,该传感器用于使用光纤进行液体测量,使用光强度调制来测量涡轮转速以转换为流量。首次将双圆同轴(DCC)光纤探头引入频率测量。通过将两个环的光强度相除,可以消除光信号采集中的干扰。为了预测非线性范围内输出频率与流量之间的特性,建立了涡轮流量传感器模型。通过分析涡轮流量传感器的特性,在扩大流量测量范围的基础上建立了分段线性方程。此外,对实验验证进行了测试。结果表明,在非线性范围内采用分段线性法后,DN20涡轮流量传感器的流量比提高了2.9倍。因此,将DCC光纤传感器与分段线性方法相结合,可以将其发展为强大的抗电磁干扰(anti-EMI)和宽范围光纤涡轮流量计。

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