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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Analysis of Mechanical and Electrical Noise Interfacing the Instrument During Data Acquisition for Measurement of Surface Properties of Textile Fibers
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Analysis of Mechanical and Electrical Noise Interfacing the Instrument During Data Acquisition for Measurement of Surface Properties of Textile Fibers

机译:数据采集​​期间用于测量纺织纤维表面性能的机械噪声和电气噪声的分析

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摘要

A new compression testing instrument was developed for the assessment of the surface properties of fibers. To measure the variation in compression force during a test, a full-bridge load cell was developed. It was seen that the signal coming from the strain gauges was superimposed with noise. The source of the noise was both electrical and mechanical. An extensive mathematical analysis of mechanical noise and the application of a mechanical noise-reduction technique minimized the mechanical noise component. An analysis of electrical noise showed that the motion control card was interfacing with the data acquisition (DAQ) card via both the RS232 and the ac power line. It was necessary to separate the motion control unit and the DAQ unit to eliminate the electrical noise problem present in the system. After eliminating the noise from the unit, the calibration of the strain gauges has been performed. The coefficient of correlation was found to be 1.00 with a cubic model. It was possible to differentiate the differences between the surface characteristics of different fibers.
机译:开发了一种新的压缩测试仪,用于评估纤维的表面性能。为了测量测试过程中压力的变化,开发了全桥式称重传感器。可以看出,来自应变仪的信号被叠加了噪声。噪声源是电气的和机械的。机械噪声的广泛数学分析和机械噪声降低技术的应用使机械噪声分量最小化。电气噪声分析表明,运动控制卡通过RS232和交流电源线与数据采集(DAQ)卡接口。必须将运动控制单元和DAQ单元分开,以消除系统中存在的电气噪声问题。消除设备的噪音后,已执行了应变计的校准。用立方模型发现相关系数为1.00。可以区分不同纤维的表面特性之间的差异。

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