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ISS-based Development of Elements and Operations for Robotic Assembly of A Space Solar Power Collector

Azita Valinia, Rud Moe, Bernard D. Seery, John C. Mankins

Year
2013
Citations
2

Abstract

We present a concept for an ISS-based optical system assembly demonstration designed to advance technologies related to future large in-space optical facilities deployment, including space solar power collectors and large-aperture astronomy telescopes. The large solar power collector problem is not unlike the large astronomical telescope problem, but at least conceptually it should be easier in principle, given the tolerances involved. We strive in this application to leverage heavily the work done on the NASA Optical Testbed Integration on ISS Experiment (OpTIIX) effort to erect a 1.5 m imaging telescope on the International Space Station (ISS). Specifically, we examine a robotic assembly sequence for constructing a large (meter diameter) slightly aspheric or spherical primary reflector, comprised of hexagonal mirror segments affixed to a lightweight rigidizing backplane structure. This approach, together with a structured robot assembler, will be shown to be scalable to the area and areal densities required for large-scale solar concentrator arrays.

Keywords

TestbedSolar sailReflector (photography)Aperture (computer memory)Computer scienceTelescopeLeverage (statistics)Aerospace engineeringOpticsOptical telescope

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