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Design and Implementation of an Infrared Radiant Source for Humidity Testing

机译:湿度测试用红外辐射源的设计与实现

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摘要

A novel way to measure humidity through testing the emissivity of an area radiant source is presented in this paper. The method can be applied in the environment at near room temperature (5~95 °C) across the relative humidity (RH) range of 20~90% RH. The source, with a grooved radiant surface, works in the far infrared wavelength band of 8~12 μm. The Monte-Carlo model for thermal radiation was set up to analyze the V-grooved radiant surface. Heat pipe technology is used to maintain an isothermal radiant surface. The fuzzy-PID control method was adopted to solve the problems of intense heat inertia and being easily interfered by the environment. This enabled the system to be used robustly across a large temperature range with high precision. The experimental results tested with a scanning radiant thermometer showed that the radiant source can provide a uniform thermal radiation capable of satisfying the requirements of humidity testing. The calibration method for the radiant source for humidity was explored, which is available for testing humidity.
机译:本文提出了一种通过测试面辐射源的发射率来测量湿度的新方法。该方法可在相对湿度(RH)范围为20〜90%RH的接近室温(5〜95°C)的环境中应用。该光源具有带凹槽的辐射表面,可在8〜12μm的远红外波段工作。建立了蒙特卡洛热辐射模型,以分析V型槽的辐射表面。热管技术用于维持等温辐射表面。采用模糊PID控制方法解决了热惯量大,易受环境干扰的问题。这使得该系统能够在较大的温度范围内以高精度稳健地使用。用扫描辐射温度计测试的实验结果表明,辐射源可以提供均匀的热辐射,能够满足湿度测试的要求。探索了湿度辐射源的校准方法,该方法可用于测试湿度。

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