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Development and Performance of a Filter Radiometer Monitor System for Integrating Sphere Sources

机译:积分球源滤波辐射计监测系统的开发与性能

摘要

The NASA Goddard Space Flight Center (GSFC) Radiometric Calibration Laboratory (RCL) maintains several large integrating sphere sources covering the visible to the shortwave infrared wavelength range. Two critical, functional requirements of an integrating sphere source are short and long-term operational stability and repeatability. Monitoring the source is essential in determining the origin of systemic errors, thus increasing confidence in source performance and quantifying repeatability. If monitor data falls outside the established parameters, this could be an indication that the source requires maintenance or re-calibration against the National Institute of Science and Technology (NIST) irradiance standard. The GSFC RCL has developed a Filter Radiometer Monitoring System (FRMS) to continuously monitor the performance of its integrating sphere calibration sources in the 400 to 2400nm region. Sphere output change mechanisms include lamp aging, coating (e.g. BaSO4) deterioration, and ambient water vapor level. The Filter Radiometer Monitor System (FRMS) wavelength bands are selected to quantify changes caused by these mechanisms. The FRMS design and operation are presented, as well as data from monitoring four of the RCL s integrating sphere sources.
机译:NASA戈达德太空飞行中心(GSFC)辐射校准实验室(RCL)维护着几个大型的积分球源,覆盖了可见光到短波红外波长范围。积分球源的两个关键功能需求是短期和长期的运行稳定性和可重复性。监视源对于确定系统错误的来源至关重要,因此可以提高对源性能的信心并量化可重复性。如果监测器数据不在既定参数范围内,则可能表明该光源需要根据美国国家科学技术研究院(NIST)的辐照度标准进行维护或重新校准。 GSFC RCL开发了一种滤光辐射计监测系统(FRMS),以连续监测其积分球校准源在400至2400nm范围内的性能。球体输出变化机制包括灯泡老化,涂层(例如BaSO4)变质和环境水蒸气水平。选择过滤器辐射计监控系统(FRMS)波段,以量化由这些机制引起的变化。介绍了疲劳风险管理系统的设计和操作,以及监测RCL四个积分球源的数据。

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