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A methodology to extract dynamic compact thermal models under time-varying boundary conditions: application to a thermopile based IR sensor

机译:在时变边界条件下提取动态紧凑热模型的方法:在基于热电堆的红外传感器中的应用

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摘要

This paper presents the extraction of a boundary independent dynamic compact thermal model (DCTM). The paper specifically focuses on time-varying Dirichlet boundary conditions influence and the methodology proposed to obtain the DCTM is applied to a thermopile based infrared (IR) sensor. These type of sensors are quite sensitive to environment changes because a variation in the sensor bulk silicon temperature usually generates a different temperature influence in the hot and cold areas that can produce incorrect transient measurements of the incident IR radiation. A DCTM can be used to estimate the influence of the environmental temperature evolution in the sensor output and with the help of a temperature sensor correct the measurement of the IR incident radiation in the real device. The methodology to construct the DCTM is based in the construction of an equivalent thermal RC network, the topology of which, as well as its component values, are obtained from the analysis of the dynamic power-temperature relationship on the points of interest.
机译:本文介绍了边界独立动态紧凑热模型(DCTM)的提取。本文特别关注随时间变化的Dirichlet边界条件的影响,为获得DCTM提出的方法被应用于基于热电堆的红外(IR)传感器。这些类型的传感器对环境变化非常敏感,因为传感器体硅温度的变化通常会在热区和冷区产生不同的温度影响,从而可能会对入射的IR辐射产生不正确的瞬态测量值。 DCTM可用于估计环境温度演变对传感器输出的影响,并借助温度传感器来校正实际设备中IR入射辐射的测量。构造DCTM的方法基于等效热RC网络的构建,该拓扑的拓扑结构及其分量值是通过对关注点的动态功率-温度关系进行分析而获得的。

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