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The research on high sensitivity and anti-saturation of capacitance sensors for measuring yarn evenness

机译:用于测量纱线均匀度的电容传感器的高灵敏度和抗饱和性研究

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Yarn evenness is an important physical parameter of yarn quality. Capacitance sensors provide signals that are used to enable automatic measurement of yarn evenness. These capacitance sensors are expected to be extremely sensitive, highly linear, and electronically homogeneous. But, extremely sensitive sensors can saturate the circuit output under the influence of ambient temperature and humidity. Hence, 3D models of a cylindrical capacitance sensor and parallel plate capacitance sensor are constructed by using finite element analysis. Detection performance of the two types of sensors is compared in terms of sensor sensitivity, linearity, and evenness. We also propose a highly sensitive phase-sensitive detection circuit for the transformer bridge that converts capacitance into a voltage signal. In order to address the problem of premature saturation in the conditioning circuit, this paper proposes a compensation circuit that consists of a programmable capacitor to detect and compensate for output drift in the circuit in real time. Experimental results demonstrate the performance of the proposed capacitance sensor.
机译:纱线均匀度是纱线质量的重要物理参数。电容传感器提供用于自动测量纱线均匀度的信号。这些电容传感器有望具有极高的灵敏度,高度线性和电子均匀性。但是,非常灵敏的传感器会在环境温度和湿度的影响下使电路输出饱和。因此,通过使用有限元分析来构建圆柱电容传感器和平行板电容传感器的3D模型。根据传感器的灵敏度,线性度和均匀度比较了两种类型的传感器的检测性能。我们还为变压器电桥提出了一种高灵敏度的相敏检测电路,该电路将电容转换为电压信号。为了解决调节电路中过早饱和的问题,本文提出了一种补偿电路,该补偿电路由可编程电容器组成,用于实时检测和补偿电路中的输出漂移。实验结果证明了所提出的电容传感器的性能。

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