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The Scientific Information Model of Chang’e-4 Visible and Near-IR Imaging Spectrometer (VNIS) and In-Flight Verification

机译:’娥四号可见和近红外成像光谱仪(VNIS)的科学信息模型和飞行中验证

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摘要

The Chang’e-4 (CE-4) lunar rover, equipped with a visible and near-IR imaging spectrometer (VNIS) based on acousto-optic tunable filter spectroscopy, was launched to the far side of the moon on December 8, 2018. The detection band of the VNIS ranges from 0.45 to 2.4 μm. Because of the weak reflection of infrared radiation from the lunar surface, a static electronic phase-locked acquisition method is adopted in the infrared channel for signal amplification. In this paper, full-link simulations and modeling are conducted on the infrared channel information flow of the instrument. The signal characteristics of the VNIS are analyzed in depth, and the signal to noise ratio (SNR) prediction and laboratory verification are presented. On 4 January 2019, the VNIS started working successfully and acquired high-resolution spectrum data of the far side of the moon for the first time. Through analysis we have found that the SNR ratio is in line with our predictions, and the data obtained by VNIS in orbit are consistent with the information model proposed in this paper.
机译:'娥四号(CE-4)月球车于2018年12月8日在月球的远端发射升空,该探测器基于声光可调谐滤光片光谱仪,具有可见光和近红外成像光谱仪(VNIS) VNIS的检测范围为0.45至2.4μm。由于月球表面红外辐射的反射较弱,因此在红外通道中采用静态电子锁相采集方法进行信号放大。在本文中,对仪器的红外通道信息流进行了全链接仿真和建模。深入分析了VNIS的信号特性,并给出了信噪比(SNR)预测和实验室验证。 2019年1月4日,VNIS成功开始工作,并首次获取了月球远端的高分辨率光谱数据。通过分析,我们发现信噪比与我们的预测相符,并且VNIS在轨获得的数据与本文提出的信息模型是一致的。

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