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A Linear Millimetre Displacement-to-Frequency Transducer

机译:线性毫米位移频率传感器

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摘要

The paper presents a novel linear, high-fidelity millimetre displacement-to-frequency transducer, based on the resistive conversion of displacement into a proportional voltage, and then frequency. The derivation of the nonlinearity, fidelity and sensitivity of the transducer is presented. Experimental results confirm that a displacement of 0–100 mm is converted into a frequency range of 0–100 kHz, with a normalised fidelity factor of 99.91%, and a worst-case nonlinearity of less than 0.08%. Tests using laboratory standards show that a displacement of 10 mm is transduced with an accuracy of ±0.6%, and a standard deviation of 530 Hz. Estimates included in the paper show that the transducer could cost less than 1% of existing systems for millimeter displacement measurement.
机译:论文提出了一种新颖的线性,高保真毫米位移频率传感器,它基于将位移电阻转换为比例电压然后转换为频率的电阻。给出了传感器的非线性,保真度和灵敏度的推导。实验结果证实,将0–100 mm的位移转换为0–100 kHz的频率范围,归一化的保真度系数为99.91%,最坏情况的非线性度小于0.08%。使用实验室标准进行的测试表明,以±0.6%的精度和530 Hz的标准偏差转换了10 mm的位移。论文中包含的估计表明,该传感器的成本不到现有系统毫米位移测量的1%。

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