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Optical systems integrated modelingAn integrated modeling capability that provides the tools by which entire optical systems and instruments can be simulated and optimized is a key technology development, applicable to all mission classes, especially astrophysics. Many of the future missions require optical systems that are physically much larger than anything flown before and yet must retain the characteristic sub-micron diffraction limited wavefront accuracy of their smaller precursors. It is no longer feasible to follow the path of 'cut and test' development; the sheer scale of these systems precludes many of the older techniques that rely upon ground evaluation of full size engineering units. The ability to accurately model (by computer) and optimize the entire flight system's integrated structural, thermal, and dynamic characteristics is essential. Two distinct integrated modeling capabilities are required. These are an initial design capability and a detailed design and optimization system. The content of an initial design package is shown. It would be a modular, workstation based code which allows preliminary integrated system analysis and trade studies to be carried out quickly by a single engineer or a small design team. A simple concept for a detailed design and optimization system is shown. This is a linkage of interface architecture that allows efficient interchange of information between existing large specialized optical, control, thermal, and structural design codes. The computing environment would be a network of large mainframe machines and its users would be project level design teams. More advanced concepts for detailed design systems would support interaction between modules and automated optimization of the entire system. Technology assessment and development plans for integrated package for initial design, interface development for detailed optimization, validation, and modeling research are presented.
Document ID
19940010364
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Shannon, Robert R.
(Arizona Univ. Tucson, AZ, United States)
Laskin, Robert A.
(Jet Propulsion Lab. California Inst. of Tech., Pasadena., United States)
Brewer, SI
(Pagos Corp. Los Angeles, CA., United States)
Burrows, Chris
(Space Telescope Science Inst. Baltimore, MD., United States)
Epps, Harlan
(California Univ. Santa Cruz., United States)
Illingworth, Garth
(California Univ. Santa Cruz., United States)
Korsch, Dietrich
(Korsch Optics, Inc. Huntsville, AL., United States)
Levine, B. Martin
(Jet Propulsion Lab. California Inst. of Tech., Pasadena., United States)
Mahajan, Vini
(Aerospace Corp. El Segundo, CA., United States)
Rimmer, Chuck
(Optical Research Associates Pasadena, CA., United States)
Date Acquired
September 6, 2013
Publication Date
August 15, 1992
Publication Information
Publication: JPL, Workshop Proceedings: Optical Systems Technology for Space Astrophysics in the 21st Century, Volume 3
Subject Category
Spacecraft Instrumentation
Accession Number
94N14837
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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