To meet the need of real-time remote monitoring of human body surface temperature for optical rehabilitation therapy, a non-contact high-precision real-time temperature measurement method based on distance compensation was proposed, and the system design was carried out. The microcontroller controls the infrared temperature measurement module and the laser range module to collect temperature and distance data. The compensation formula of temperature with distance wass fitted according to the least square method. Testing had been performed on different individuals to verify the accuracy of the system. The results indicate that the designed non-contact infrared temperature measurement system has a residual error of less than 0.2°C and the response time isless than 0.1s in the range of 0 to 60cm. This provides a reference for developing long-distance temperature measurement equipment in optical rehabilitation therapy.
CITATION STYLE
Chen, J., Wang, J.-P., Shen, T.-Y., Xiong, D.-X., & Guo, L.-Q. (2017). High Precision Infrared Temperature Measurement System Based on Distance Compensation. ITM Web of Conferences, 12, 03021. https://doi.org/10.1051/itmconf/20171203021
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