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Measurement approach and design of the CubeSat Infrared Atmospheric Sounder (CIRAS)

机译:CubeSat红外大气探测器(CIRAS)的测量方法和设计

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摘要

The CubeSat Infrared Atmospheric Sounder (CIRAS) will measure upwelling infrared radiation of the Earth in the MWIR region of the spectrum from space on a CubeSat. The observed radiances have information of potential value to weather forecasting agencies and can be used to retrieve lower tropospheric temperature and water vapor globally for weather and climate science investigations. Multiple units can be flown to improve temporal coverage or in formation to provide new data products including 3D atmospheric motion vector winds. CIRAS incorporates key new instrument technologies including a 2D array of High Operating Temperature Barrier Infrared Detector (HOT-BIRD) material, selected for its high uniformity, low cost, low noise and higher operating temperatures than traditional materials. The detectors are hybridized to a commercial ROIC and commercial camera electronics. The second key technology is an MWIR Grating Spectrometer (MGS) designed to provide imaging spectroscopy for atmospheric sounding in a CubeSat volume. The MGS has no moving parts and includes an immersion grating to reduce the volume and reduce distortion. The third key technology is an infrared blackbody fabricated with black silicon to have very high emissivity in a flat plate construction. JPL will also develop the mechanical, electronic and thermal subsystems for CIRAS, while the spacecraft will be a commercially available CubeSat. The integrated system will be a complete 6U CubeSat capable of measuring temperature and water vapor profiles with good lower tropospheric sensitivity. The CIRAS is the first step towards the development of an Earth Observation Nanosatellite Infrared (EON-IR) capable of operational readiness to mitigate a potential loss of CrIS on JPSS or complement the current observing system with different orbit crossing times.
机译:CubeSat红外大气探测器(CIRAS)将从CubeSat的太空中测量光谱的MWIR区域中地球的上升流红外辐射。观测到的辐射具有对天气预报机构的潜在价值信息,可用于在全球范围内检索较低的对流层温度和水汽,以进行天气和气候科学调查。可以飞行多个单元以改善时间覆盖范围,也可以飞行以提供包括3D大气运动矢量风在内的新数据产品。 CIRAS融合了关键的新仪器技术,包括2D阵列的高工作温度屏障红外探测器(HOT-BIRD)材料,以其高均匀性,低成本,低噪声和比传统材料更高的工作温度而被选择。探测器与商用ROIC和商用相机电子设备混合在一起。第二项关键技术是MWIR光栅光谱仪(MGS),旨在为CubeSat体积中的大气探测提供成像光谱。 MGS没有活动部件,并且包括浸没光栅以减小体积并减少失真。第三个关键技术是用黑硅制成的红外黑体,在平板结构中具有很高的发射率。 JPL还将开发用于CIRAS的机械,电子和热子系统,而该航天器将是可商用的CubeSat。该集成系统将是一个完整的6U CubeSat,能够以较低的对流层灵敏度测量温度和水蒸气剖面。 CIRAS是朝着发展地球观测纳米卫星红外(EON-IR)迈出的第一步,该红外卫星已准备就绪,可以减轻JPSS上CrIS的潜在损失,或以不同的轨道穿越时间补充现有的观测系统。

著录项

  • 来源
    《Cubesats and nanoisats for remote sensing》|2016年|997806.1-997806.7|共7页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove, Pasadena, CA 91109;

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove, Pasadena, CA 91109;

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove, Pasadena, CA 91109;

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove, Pasadena, CA 91109;

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove, Pasadena, CA 91109;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Infrared; Sounding; CubeSat; Grating; Spectrometer;

    机译:红外线;探空;立方体卫星光栅光谱仪;

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