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NASA NTRS · 20040030478

Pointing Control System Design and Performance Evaluation for TPF Coronagraph

Abstract

The Terrestrial Planet Finder (TPF) program aims to detect and characterize extra-solar Earth-like planets. The coronagraph telescope is one of the four mission concepts being studied. In order to reject the star flux and detect the planet flux in the visible light range, the coronagraph telescope must achieve a rejection ratio on the order of a billion to one. Dynamic jitter, introduced by environmental and on-board mechanical disturbances, degrades the optical performance, as characterized primarily by contrast ratio. The feasibility of using passive vibration isolation combined with active attitude and line-of- sight control systems to stabilize the spacecraft and the optical components to the requisite level is being studied. The telescope is also required to slew between targets. The slew mode control law must be designed to balance the need for efficient large-angle maneuvers while simultaneously avoiding the excitation of flexible modes in order to minimize settling time.

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BibTeXRIS

Liu, Kuo-Chia, Blaurock, Carl, Mosier, Gary. 2004-01-01. Pointing Control System Design and Performance Evaluation for TPF Coronagraph. https://ntrs.nasa.gov/citations/20040030478

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