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The Space Metrology Program

机译:空间计量计划

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摘要

The full potential of current remote sensor technology is limited by the inability to correct biases once an exo-atmospheric remote sensor becomes operational. Even when the calibration is traced to the International System of Units, SI, and the instrument is performing within the operational envelope wherein it is calibrated, the problem exists and a Space Metrology Program is a potential solution to the problem. This paper discusses such a program, suggests a feasibility study to address the issues and recommends a plan of action. Any operational instrument has a bias and reducing the magnitude of the bias can only be accomplished when an adequately accurate standard is accessible by the instrument while the instrument is in its operational environment. Currently the radiometric flux from the sun, the moon and the stars is inadequately accurate SI to provide a standard that is consistent with the remote sensor state-of-the-art technology. The result is data that is less accurate than it could be often leading to confusing and conflicting conclusions drawn from that data. Planned remote sensors such as those required to meet future program needs (e.g. the United States National Polar-Orbiting Operational Environmental Satellite System (NPOESS) and the proposed international Global Earth Observation Program) are going to need the higher accuracy radiometric standards to maintain their accuracy once they become operational. To resolve the problem, a set of standard radiometers on the International Space Station is suggested against which other exo-atmospheric radiometric instruments can be calibrated. A feasibility study for this program is planned.
机译:一旦外部大气遥控传感器变得可操作,电流远程传感器技术的全部电位受到无法校正偏差的限制。即使校准被追溯到国际单位,SI和仪器在操作信封内,也在校准它的操作包络中,存在问题,空间计量程序是问题的潜在解决方案。本文讨论了这样的计划,表明可行性研究解决问题并建议采取行动计划。任何操作仪器都具有偏置并减小偏置的幅度,只能在仪器在其操作环境中可以通过仪器访问充分准确的标准时完成。目前来自太阳,月球和恒星的辐射磁通量不充分,准确,提供了与遥控传感器最先进技术一致的标准。结果是数据不如从该数据中汲取的令人困惑和相互矛盾的结论的数据。计划的远程传感器,如需要满足未来的计划需求(例如美国国家北极轨道运营环境卫星系统(NPoess)和拟议的国际全球地球观测计划)将需要更高的准确度辐射标准来维持其准确性一旦他们成为运作。为了解决这个问题,建议在国际空间站上进行一组标准辐射仪,反对可以校准其他卓越大气压仪器。计划该计划的可行性研究。

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