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Towards a Miniaturized Photon Counting Laser Altimeter and Stereoscopic Camera Instrument Suite for Microsatellites

机译:朝着微卫星的小型光子计数激光高度计和立体相机仪表套件

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摘要

In the following we review the optimization for microsatellite deployment of a highly integrated payload suite comprising a high resolution camera, an additional camera for stereoscopic imaging, and a single photon counting laser altimeter. This payload suite, the `Stereo Imaging Laser Altimeter' SILAT has been designated for deployment aboard the FAST microsatellite formation mission for Earth observation. This instrument suite has been designed for a Jupiter mission, but has been redesigned and optimized for an Earth observation mission. This paper reviews the simulated Earth observation performance, the design modifications made for the mission and the optimization of the design for microsatellite use. Mass and power budgets are used to demonstrate the changes and the performance analysis is represented trough the simulation results. It is expected that the optimization will reduce the mass of the instrument by approximately 20% without compromising the performance of the instrument. In addition, results from breadboarding experiments of individual instrument components will be presented to show the progress from design optimization towards the FAST flight model.
机译:在下面,我们检查对于高度集成的有效载荷套件包括高分辨率摄像机,用于立体成像的附加照相机,以及单光子计数激光高度表的微部署优化。该有效载荷的套房,在'立体成像激光高度计”席拉已被指定为部署一艘用于地球观测FAST微编队的使命。该仪器套件是专为木星的任务,但已被重新设计和地球观测任务进行了优化。本文综述了模拟地球观测性能,为使命而设计的微卫星使用的优化设计而成的修改。质量和功率预算用于演示的变化和性能分析表示槽的模拟结果。据预计,优化将约20 %降低仪器的质量不会影响仪器的性能。另外,从实验电路个人仪表元器件的实验结果将用于展示从设计优化对FAST飞行模型的进展。

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