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Method to remove the effect of ambient temperature on radiometric calibration

机译:消除环境温度对辐射定标影响的方法

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摘要

High precision radiometric calibration is essential for infrared imaging systems, especially in scientific applications where an accurate quantitative analysis is required. Nevertheless, calibration and radiometry are usually not simultaneously performed. Hence the discrepancy of ambient temperature between calibration and actual measurement can generate significant measurement errors unless the calibration results have been properly corrected. To overcome the restriction, we studied the effect of ambient temperature on radiometric calibration, then derived the relationship between calibration results and ambient temperature considering the integration time. A novel method compensating for the impact of ambient temperature on the calibration of a cooled infrared system is proposed. Several experiments are performed, and the results indicate that the proposed method can not only ensure the accuracy of calibration but achieve calibration results under any ambient temperature and arbitrary integration time.
机译:高精度辐射校准对于红外成像系统至关重要,尤其是在需要精确定量分析的科学应用中。但是,通常不会同时执行校准和辐射测定。因此,除非校准结果已正确校正,否则校准和实际测量之间的环境温度差异会产生明显的测量误差。为了克服该限制,我们研究了环境温度对辐射校准的影响,然后考虑了积分时间,得出了校准结果与环境温度之间的关系。提出了一种补偿环境温度对冷却红外系统校准影响的新方法。进行了几次实验,结果表明,该方法不仅可以保证校正的准确性,而且可以在任何环境温度和任意积分时间下获得校正结果。

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