改进的移动设备红外温度传感系统

K. Keranen, Jukka-Tapani Makinen, P. Korhonen, E. Juntunen, V. Heikkinen, J. Makela
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引用次数: 0

摘要

红外温度测量系统不仅包括传感器模块和电子元件,还包括将红外辐射引导到传感器上的光机械系统。如果检测器不仅看到目标,而且看到测量系统本身的部件,则部件的几何形状和发射率会影响读数。在正常的工业应用中,光学元件被设计成使表面稳定到与传感器相同的温度。这使得由设备温度引起的误差可以很容易地校准。校正对固定条件有效,通常在校准温度附近,通常在室温下。然而,我们表明,如果传感器嵌入到具有热源(如电力电子设备)的移动(手持)设备中,则正常条件不再有效并且校准失败。为了改进移动设备红外温度传感系统,研究了红外温度传感系统的光学概念并进行了详细设计。此外,通过测量传感器样机对其光学性能进行了建模和验证。采用了注意工作温度变化的校准程序。在+12.6 ~ +49.3℃的工作温度范围和+10 ~ +90℃的目标温度范围内,所实现的红外温度传感器在正确的转移校准曲线上的重复性优于±0.5℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved infrared temperature sensing system for mobile devices
An infrared (IR) temperature measurement system consists of not only a sensor module and electronics, but also an optomechanical system that guides IR radiation onto the sensor. The geometry and emissivity of the parts affects the reading, if the detector sees not only the target but parts of the measuring system itself. In normal industrial applications, the optics is designed so that the surfaces stabilize to the same temperature as the sensor. This allows the error caused by the device temperature to be easily calibrated away. The correction is valid for stationary conditions and usually near the calibration temperature, which is typically at room temperature. However, we show that if the sensor is embedded into a mobile (hand-held) device which has heat sources, such as power electronics, the normal conditions are no longer valid and the calibration fails. In order to improve infrared temperature sensing for mobile devices, the optics concept was studied and detailed design was performed. In addition, the optics performance was modelled and verified by measurement sensor prototyping. A calibration procedure noticing operational temperature variations was applied. The repeatability of the implemented IR temperature sensor using on a correct transferred calibration curve was better than plusmn0.5degC in an operational temperature range from +12.6 to +49.3degC and target range from +10 to +90degC.
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