首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Radiometric and spectral validation of Atmospheric Infrared Sounder observations with the aircraft-based Scanning High-Resolution Interferometer Sounder
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Radiometric and spectral validation of Atmospheric Infrared Sounder observations with the aircraft-based Scanning High-Resolution Interferometer Sounder

机译:辐射和大气光谱验证红外探测器观测的机载扫描分辨率干涉仪测深仪

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The ability to accurately validate high–spectral resolution infrared radiance measurements from space using comparisons with a high-altitude aircraft spectrometer has been successfully demonstrated. The demonstration is based on a 21 November 2002 underflight of the AIRS on the NASA Aqua spacecraft by the Scanning-HIS on the NASA ER-2 high-altitude aircraft. A comparison technique which accounts for the different viewing geometries and spectral characteristics of the two sensors is introduced, and accurate comparisons are made for AIRS channels throughout the infrared spectrum. Resulting brightness temperature differences are found to be 0.2 K or less for most channels. Both the AIRS and the Scanning-HIS calibrations are expected to be very accurate (formal 3-sigma estimates are better than 1 K absolute brightness temperature for a wide range of scene temperatures), because high spectral resolution offers inherent advantages for absolute calibration and because they make use of high-emissivity cavity blackbodies as onboard radiometric references. AIRS also has the added advantage of a cold space view, and the Scanning-HIS calibration has recently benefited from the availability of a zenith view from high-altitude flights. Aircraft comparisons of this type provide a mechanism for periodically testing the absolute calibration of spacecraft instruments with instrumentation for which the calibration can be carefully maintained on the ground. This capability is especially valuable for assuring the long-term consistency and accuracy of climate observations, including those from the NASA EOS spacecraft (Terra, Aqua and Aura) and the new complement of NPOESS operational instruments. The validation role for accurately calibrated aircraft spectrometers also includes application to broadband instruments and linking the calibrations of similar instruments on different spacecraft. It is expected that aircraft flights of the Scanning-HIS and its close cousin the NPOESS Airborne Sounder Test Bed (NAST) will be used to check the long-term stability of AIRS and the NPOESS operational follow-on sounder, the Cross-track Infrared Sounder (CrIS), over the life of the missions.
机译:能够准确地验证high-spectral分辨率的红外辐射测量空间使用比较高海拔飞机光谱仪已成功演示。2002年11月underflight NASA的播出NASA Aqua航天器上的自己ER-2高空飞机。占不同的技术观察几何图形和光谱特征介绍了两个传感器,准确比较了播出渠道红外光谱。发现0.2 K或温度差异对于大多数渠道少。预计自己校准非常准确(正式3-sigma估计更好比1 K绝对亮度温度广泛的现场温度),因为高光谱分辨率提供固有的优势绝对校准,因为他们使用高的辐射率腔黑体机载辐射引用。冷空间视图的优势,自己校准最近受益从天顶视图的可用性高空飞行。这种类型提供一个机制来定期测试航天器的绝对校准仪器仪表的校准可以精心维护的地面。为保证长期一致性和气候观测精度,包括那些从美国国家航空航天局EOS飞船(泰拉,阿卡和光环)和新的NPOESS补充操作仪器。准确地校准飞机光谱仪包括宽带工具和应用程序链接类似仪器的校准在不同的宇宙飞船。自己和它的飞机航班关闭表哥NPOESS空降测深仪测试床(NAST)将用于检查长期NPOESS播出和操作的稳定性后续测深仪,航迹红外测深仪(短剑),生活的任务。

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