Embedded Model Control Application to Drag-Free and Satellite-to-Satellite Tracking

L. Massotti, E. Canuto, P. Silvestrin
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引用次数: 4

Abstract

This paper describes the realization of a generic simulator for formation flying satellites, and the design and application of embedded model control (EMC) to the spacecraft control, as potentially applicable to a constellation of drag-free satellites. They can be employed for scientific purposes: it is presented the satellite-satellite interferometry mission for the measurement of the Earth's gravitational field harmonics, which follow the incoming gravimetric mission GOCE and the gravitational wave observatory LISA. The core drag-free controller (DFC) was partly validated by preliminary design review of GOCE mission, and particular emphasize is given to the acceleration observer and to the command computation law. The measurement model and mission requirements are also presented, followed by the simulation results of the DFC, tuned ad-hoc in order to obtain accurate aiming target
嵌入式模型控制在无拖拽和星对星跟踪中的应用
本文介绍了编队飞行卫星通用模拟器的实现,以及嵌入式模型控制(EMC)在航天器控制中的设计与应用,具有应用于无拖曳卫星星座的潜力。它们可以用于科学目的:它提出了测量地球引力场谐波的卫星-卫星干涉测量任务,该任务是继重力测量任务GOCE和引力波天文台LISA之后进行的。通过GOCE任务的初步设计评审,对核心无拖控制器(DFC)进行了部分验证,重点介绍了加速度观测器和指令计算规律。给出了测量模型和任务要求,并给出了DFC的仿真结果,对其进行了自适应调整,以获得精确瞄准目标
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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