光机械热微传感器中非平稳过程的建模

A. Kozlov
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引用次数: 0

摘要

提出了一种确定光机械热微传感器频率响应的解析方法。考虑了三种类型的微传感器:在板的相邻角上有两个支撑梁的微传感器;微传感器的两个支撑梁位于板的相对角;带有四个支撑梁的微传感器。考虑到每种类型微传感器的特点,在其结构中,划分了建模的领域。将域划分为具有均匀参数的区域。得到了各区域的非稳态热传导方程,并用时间傅里叶变换求解。区域间的热通量密度由频域的伴随边界条件确定。得到了微传感器频率响应的解析表达式。应用该方法求出了三种类型的光机热微传感器的频率响应、截止频率和时间常数。得到了双支撑梁相邻角的微传感器灵敏度和时间常数与梁双材料截面长度的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of non-stationary processes in optomechanical thermal microsensors
An analytical method is developed to determine the frequency response of optomechanical thermal microsensors. The three types of the microsensors are considered: microsensor with the two supporting beams in adjacent corners of the plate; microsensor with the two supporting beams in opposite corners of the plate; microsensor with the four supporting beams. Taking into account the features of each type of the microsensors, in they structures, the domains of modelling are marked out. The domains are divided into the regions with homogeneous parameters. For each region the non-steady-state heat conduction equation is obtained that is solved by means of the time Fourier transform. The heat flux densities between the regions are determined using adjoint boundary conditions in the frequency domain. The analytical expression for the frequency responses of the microsensors is obtained. This method is applied to find the frequency responses, cutoff frequencies and time constants for the three types of optomechanical thermal microsensors. The dependencies of the sensitivity and the time constant on the length of the bi-material section of the beams for the microsensor with the two supporting beams in adjacent corners are obtained.
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