Open AccessEngineeringPhysics

Nicolas Lee, P. Backes, J. Burdick, S. Pellegrino, Christine L. Fuller, K. Hogstrom, B. Kennedy, Junggon Kim, R. Mukherjee, C. Seubert, Yen-Hung Wu

2016.10.1Journal of Astronomical Telescopes Instruments and Systems

DOI: 10.1117/1.jatis.2.4.041207

Abstract

Abstract. An architecture and conceptual design for a robotically assembled, modular space telescope (RAMST) that enables extremely large space telescopes to be conceived is presented. The distinguishing features of the RAMST architecture compared with prior concepts include the use of a modular deployable structure, a general-purpose robot, and advanced metrology, with the option of formation flying. To demonstrate the feasibility of the robotic assembly concept, we present a reference design using the RAMST architecture for a formation flying 100-m telescope that is assembled in Earth orbit and operated at the Sun–Earth Lagrange Point 2.

Citation format

LEE, Nicolas, et al. Architecture for in-space robotic assembly of a modular space telescope. Journal of Astronomical Telescopes Instruments and Systems, 2016, 2.