Calibration Methodology for the Solar Calibrator of Moon-based Two-Channel Spectrometer
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摘要: 嫦娥七号轨道器计划搭载的中法合作国际载荷——月基双通道地球辐射能谱仪,该仪器通过0.2~50μm的全波观测通道,和5~50μm的长波观测通道,可实现在月球轨道上对地球出射全波和长波辐射进行探测,并通过地球的全波辐射和长波辐射的差分获得短波辐射的结果。仪器上配备有星上定标黑体,可对全波通道和长波通道进行长波定标,而在全波通道的短波定标方面,由于功耗和体积限制,未配备星上短波定标光源。为了实现仪器在轨短波定标,本文提出了太阳定标器的概念,采用太阳定标器和光学小孔构成月基双通道地球辐射能谱仪的短波定标模块。本文首先对月基双通道地球辐射能谱仪仪器概况进行介绍。然后,基于热敏电阻型辐射计的工作原理建立了太阳定标器的理论模型,为进一步保证在轨定标精度,对太阳定标器的发射前实验定标方法开展研究,提出了基于激光光源与低温辐射计的辐射功率定标方法,以及基于太阳模拟光源与SIAR-2C太阳绝对辐射计的辐照度定标方法,并建立了可定量描述温度特性与角度特性对辐射定标系数影响的实验方法与修正模型,为太阳定标器性能的地面验证及在轨应用提供支撑。Abstract: The Moon-based Two-Channel Spectrometer, an international payload jointly developed by China and France, is planned to be onboard the Chang'e-7 orbiter. This instrument features a broadband observation channel covering 0.2–50μm and a longwave observation channel covering 5–50μm, enabling the measurement of Earth's outgoing broadband and longwave radiation from lunar orbit. The shortwave radiation can be derived by differencing the broadband and longwave measurements. The instrument is equipped with onboard calibration blackbodies for longwave calibration of both channels; however, due to constraints in power consumption and volume, no onboard shortwave calibration source is included for the broadband channel. To enable on-orbit shortwave calibration, this study proposes the concept of a solar calibrator, which, together with an optical aperture, forms the shortwave calibration module of the Moon-based Two-Channel Spectrometer. This paper first introduces the overall design and specifications of the lunar-based dual-channel Earth radiance spectrometer. Then, based on the operating principle of a thermistor-type radiometer, a theoretical model of the solar calibrator is established. To further ensure on-orbit calibration accuracy, pre-launch experimental calibration methods for the solar calibrator are studied. A radiometric power calibration method using a laser source and a low-temperature radiometer is proposed, as well as an irradiance calibration method using a solar simulator and the SIAR-2C absolute solar radiometer. Furthermore, experimental methods and correction models are developed to quantitatively describe the effects of temperature and angular characteristics on the radiometric calibration coefficient, providing support for the ground validation and in-orbit application of the solar calibrator.
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Key words:
- Earth Radiation Budget /
- Radiation Calibration /
- Thermistor /
- Radiation Response Model
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