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A novel optimal sensitivity design scheme for yarn tension sensor using surface acoustic wave device

机译:利用表面声波装置的纱线张力传感器最佳灵敏度设计新方案

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摘要

In this paper, we propose a novel optimal sensitivity design scheme for the yarn tension sensor using surface acoustic wave (SAW) device. In order to obtain the best sensitivity, the regression model between the size of the SAW yarn tension sensor substrate and the sensitivity of the SAW yarn tension sensor was established using the least square method. The model was validated too. Through analyzing the correspondence between the regression function monotonicity and its partial derivative sign, the effect of the SAW yarn tension sensor substrate size on the sensitivity of the SAW yarn tension sensor was investigated. Based on the regression model, a linear programming model was established to gain the optimal sensitivity of the SAW yarn tension sensor. The linear programming result shows that the maximum sensitivity will be achieved when the SAW yarn tension sensor substrate length is equal to 15 mm and its width is equal to 3 mm within a fixed interval of the substrate size. An experiment of SAW yarn tension sensor about 15 mm long and 3 mm wide was presented. Experimental results show that the maximum sensitivity 1982.39 Hz/g was accomplished, which confirms that the optimal sensitivity design scheme is useful and effective.
机译:在本文中,我们提出了一种使用表面声波(SAW)装置的纱线张力传感器的最佳灵敏度设计方案。为了获得最佳灵敏度,使用最小二乘法建立了SAW纱线张力传感器基板尺寸与SAW纱线张力传感器灵敏度之间的回归模型。该模型也得到了验证。通过分析回归函数单调性与其偏导数之间的对应关系,研究了SAW纱线张力传感器基片尺寸对SAW纱线张力传感器灵敏度的影响。在回归模型的基础上,建立了线性规划模型以获得声表面波张力传感器的最佳灵敏度。线性编程结果表明,当SAW纱线张力传感器基板的长度等于15 mm,宽度等于3 mm时,在固定的基板尺寸范围内将获得最大的灵敏度。提出了约15mm长,3mm宽的SAW纱线张力传感器的实验。实验结果表明,实现了最高灵敏度1982.39 Hz / g,证实了最佳灵敏度设计方案是有效的。

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