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Lucy Mission to the Trojan Asteroids: Instrumentation and Encounter Concept of Operations

The Planetary Science Journal(2021)

Southwest Res Inst

Cited 32|Views6
Abstract
The Lucy Mission accomplishes its science during a series of five flyby encounters with seven Trojan asteroid targets. This mission architecture drives a concept of operations design that maximizes science return, provides redundancy in observations where possible, features autonomous fault protection, and utilizes onboard target tracking near closest approach. These design considerations reduce risk during the relatively short time-critical periods when science data is collected. The payload suite consists of a color camera and infrared imaging spectrometer, a high-resolution panchromatic imager, and a thermal infrared spectrometer. The mission design allows for concurrent observations of all instruments. Additionally, two spacecraft subsystems will also contribute to the science investigations: the Terminal Tracking Cameras will obtain wide field-of-view imaging near closest approach to determine the shape of each of the Trojan targets and the telecommunication subsystem will carry out Doppler tracking of the spacecraft to determine the mass of each of the Trojan targets.
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要点】:本文介绍了Lucy任务对特洛伊小行星的探测计划,重点描述了任务的科学仪器和操作概念,旨在最大化科学回报并降低收集数据时的时间关键期风险。

方法】:任务采用五次飞越探测七个特洛伊小行星目标的设计,使用包括彩色相机、红外成像光谱仪、高分辨率全色成像仪和热红外光谱仪在内的科学仪器载荷,并允许所有仪器的同时观测。

实验】:实验通过飞越特洛伊小行星进行,使用的数据集由终端跟踪相机获得的近距离广角图像以及通信子系统进行的航天器多普勒追踪数据构成,以确定小行星的形状和质量。