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Test Plan for a Calibration Demonstration System for the Reflected Solar Instrument for the Climate Absolute Radiance and Refractivity Observatory

机译:气候绝对辐射率和折射率观测站的反射太阳能仪器校准演示系统的测试计划

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摘要

The Climate Absolute Radiance and Refractivity Observatory (CLARREO) mission addresses the need to observe high-accuracy, long-term climate change trends and to use decadal change observations as the most critical method to determine the accuracy of climate change. One of the major objectives of CLARREO is to advance the accuracy of SI traceable absolute calibration at infrared and reflected solar wavelengths. This advance is required to reach the on-orbit absolute accuracy required to allow climate change observations to survive data gaps while remaining sufficiently accurate to observe climate change to within the uncertainty of the limit of natural variability. While these capabilities exist at NIST in the laboratory, there is a need to demonstrate that it can move successfully from NIST to NASA and/or instrument vendor capabilities for future spaceborne instruments. The current work describes the test plan for the Solar, Lunar for Absolute Reflectance Imaging Spectroradiometer (SOLARIS) which is the calibration demonstration system (CDS) for the reflected solar portion of CLARREO. The goal of the CDS is to allow the testing and evaluation of calibration approaches , alternate design and/or implementation approaches and components for the CLARREO mission. SOLARIS also provides a test-bed for detector technologies, non-linearity determination and uncertainties, and application of future technology developments and suggested spacecraft instrument design modifications. The end result of efforts with the SOLARIS CDS will be an SI-traceable error budget for reflectance retrieval using solar irradiance as a reference and methods for laboratory-based, absolute calibration suitable for climate-quality data collections. The CLARREO mission addresses the need to observe high-accuracy, long-term climate change trends and advance the accuracy of SI traceable absolute calibration. The current work describes the test plan for the SOLARIS which is the calibration demonstration system for the reflected solar portion of CLARREO. SOLARIS provides a test-bed for detector technologies, non-linearity determination and uncertainties, and application of future technology developments and suggested spacecraft instrument design modifications. The end result will be an SI-traceable error budget for reflectance retrieval using solar irradiance as a reference and methods for laboratory-based, absolute calibration suitable for climate-quality data collections.
机译:气候绝对辐射率和折射率观测站(CLARREO)的任务是观察高精度,长期的气候变化趋势,并使用十年变化观测作为确定气候变化准确性的最关键方法。 CLARREO的主要目标之一是提高在红外和反射太阳光波长下SI可溯源的绝对校准的准确性。需要这种进步来达到在轨绝对精度,以使气候变化观测能够克服数据缺口,同时保持足够的精度以观测气候变化,使其处于自然变异极限的不确定性之内。尽管NIST在实验室中具有这些功能,但有必要证明它可以成功地从NIST转移到NASA和/或仪器供应商的能力,以用于未来的星载仪器。当前的工作描述了用于绝对反射成像光谱仪(SOLARIS)的太阳的测试计划,这是CLARREO反射太阳部分的校准演示系统(CDS)。 CDS的目标是允许对CLARREO任务的校准方法,替代设计和/或实施方法以及组件进行测试和评估。 SOLARIS还为检测器技术,非线性确定和不确定性以及未来技术发展的应用和建议的航天器设计修改提供了试验台。 SOLARIS CDS努力的最终结果将是使用太阳辐照度作为参考的反射率检索的SI可追溯误差预算,以及适用于气候质量数据收集的基于实验室的绝对校准方法。 CLARREO任务解决了观察高精度,长期气候变化趋势并提高SI可追溯绝对校准精度的需求。当前的工作描述了SOLARIS的测试计划,该计划是CLARREO反射太阳能部分的校准演示系统。 SOLARIS为探测器技术,非线性确定和不确定性以及未来技术发展的应用和建议的航天器设计修改提供了试验台。最终结果将是一个可追溯到SI的误差预算,用于使用太阳辐照度作为参考的反射率检索以及适用于气候质量数据收集的基于实验室的绝对校准方法。

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