Bond graph for design improvement of a multivariate sensor

Xinyao Tang, R. Gao, Zhaoyan Fan, D. Kazmer
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Abstract

This paper describes a wireless data transmission technique using acoustic waves as the information carrier for on-line injection molding process measurements, including melt temperature, pressure, velocity and viscosity. A design scheme of the optimization of the input electrical impedance matching with the transmission system of the multivariate sensor based on the bond graph modeling approach is proposed. Bond graph models of each constituent component within the transmission system are established, where parameters regarding the properties of the piezo-material, layer thickness, and input electrical impedance could be manipulated easily. The effects of different combinations of capacitor and inductor that constitute the input electrical circuit are investigated. An optimal combination for electrical impedance matching is determined through bond graph simulation. This optimal solution improves the design of sensor circuits with the capability of generating the highest output gain or increasing the transmission distance under the same electrical excitation, meanwhile ensuring that the received signal has high signal-to-noise-ratio (SNR) for further parameter retraction. Bond graphing has been shown as an effective approach for guiding the design of complex, cross-domain, and embedded sensing systems.
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多变量传感器设计改进的键合图
本文介绍了一种以声波为信息载体的无线数据传输技术,用于在线测量注塑过程中的熔体温度、压力、速度和粘度。提出了一种基于键合图建模方法的多变量传感器输入阻抗与传输系统匹配优化设计方案。建立了传输系统内各组成部件的键合图模型,其中关于压电材料特性、层厚和输入电阻抗的参数可以很容易地进行操作。研究了构成输入电路的电容器和电感的不同组合的影响。通过键合图仿真确定了电阻抗匹配的最优组合。该优化方案改进了传感器电路的设计,使其能够在相同的电激励下产生最高的输出增益或增加传输距离,同时保证接收到的信号具有较高的信噪比(SNR),便于进一步的参数回收。键合图已被证明是指导设计复杂、跨域和嵌入式传感系统的有效方法。
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