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Research on temperature calibration of extended area blackbody based on two-point multi-section linear correction algorithm

机译:基于两点多部分线性校正算法的大面积黑体温度校准研究

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The spectral radiation of extended area blackbody source is widely used to provide a reference for absolute temperature in infrared test and calibration. Thus the temperature accuracy of extended area blackbody is a critical parameter to determine the performance of test and calibration system. The temperature of emissive surface is measured and controlled by Platinum resistance temperature sensor. A variety of techniques have been developed for improving the temperature accuracy of extended area blackbody. In order to overcome nonlinear error caused by the Platinum resistance temperature sensor, a calibration method based on two-point multi-section linear correction algorithm is proposed. The tests verify that the method enhances the calibration accuracy of temperature accuracy of extended area blackbody and satisfies the requirements of high precision tests on metrological quality.
机译:扩展区域黑体源的光谱辐射被广泛用来为红外测试和校准中的绝对温度提供参考。因此,扩展区域黑体的温度精度是确定测试和校准系统性能的关键参数。发射表面的温度由铂电阻温度传感器测量和控制。已经开发了多种技术来提高扩展区域黑体的温度精度。为了克服铂电阻温度传感器引起的非线性误差,提出了一种基于两点多截面线性校正算法的标定方法。测试证明,该方法提高了大面积黑体温度精度的校准精度,满足了对计量质量的高精度测试的要求。

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