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Thermal calibration of the MEDA-TIRS radiometer onboard NASA's Perseverance rover

机译:Meda-tirs辐射计的热校准在NASA坚持不懈的流动站

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This article describes a comprehensive testing method for the thermal calibration of the Thermal InfraRed Sensor (TIRS) onboard NASA's Perseverance rover. Ground-based IR detectors operating at the surface of Mars are subjected to inaccuracies caused by the inclusion of thermal gradients in their packages. To reduce such uncertainties, it is necessary to compensate for their effects. Here, details of the TIRS thermo-mechanical design and a simplified thermal mathematical model (TMM) that accounts for the presence of thermal gradients in the detector's package are provided. Then, a set of equations for the estimation and compensation of thermal gradients are proposed based on the results of the TMM. Thermal calibration tests to identify the mathematical estimators are analyzed, providing details of the test setups and highlighting their limitations and restrictions. Finally, experimental results of the calibration tests are presented, along with the uncertainty sources and potential systematic errors associated with the estimation of the gradients. The results presented here show a significant improvement in the accuracy of TIRS versus previous work, thus fulfilling of the radiometer scientific requirements set by the Mars 2020 science team.
机译:本文介绍了热红外传感器(TIRS)板载美国宇航局的火星车毅力热校准的综合测试方法。在火星的表面运行的基于地面的IR检测器受到由在其包装中包含的热梯度的不准确性。为了减少这种不确定性,有必要以补偿其影响。这里,TIRS的细节热机械提供设计和占该检测器的封装的热梯度的存在下,简化的热数学模型(TMM)。然后,一组方程的估计和热梯度的补偿是基于TMM的结果提出。热校准测试,以确定数学估计进行了分析,提供测试设置的细节,并强调其局限性和限制。最后,校准测试的实验结果提出,用梯度的估计相关的不确定性的来源和潜在的系统误差一起。结果这里介绍的显示TIRS与以前的工作精度的改善显著,从而实现由火星2020科学小组设置辐射计的科学要求。

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