Structural-Thermal-Optical-Performance (STOP) Model Development and Analysis of a Field-widened Michelson Interferometer

被引:4
|
作者
Scola, Salvatore J. [1 ]
Osmundsen, James F. [1 ]
Murchison, Luke S. [1 ]
Davis, Warren T. [1 ]
Fody, Joshua M. [1 ]
Boyer, Charles M. [1 ]
Cook, Anthony L. [1 ]
Hostetler, Chris A. [1 ]
Seaman, Shane T. [1 ]
Miller, Ian J. [2 ]
Welch, Wayne C. [3 ]
Kosmer, Adam R. [3 ]
机构
[1] NASA, Langley Res Ctr, Hampton, VA 23681 USA
[2] LightMachinery, Nepean, ON K2E 7L2, Canada
[3] Welch Mech Designs, Belcamp, MD 21017 USA
关键词
STOP analysis; structural thermal optical performance model; Michelson interferometer; Comet software; HSRL; NASA Langley; SPECTRAL-RESOLUTION LIDAR;
D O I
10.1117/12.2061041
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
An integrated Structural-Thermal-Optical-Performance (STOP) model was developed for a field-widened Michelson interferometer which is being built and tested for the High Spectral Resolution Lidar (HSRL) project at NASA Langley Research Center (LaRC). The performance of the interferometer is highly sensitive to thermal expansion, changes in refractive index with temperature, temperature gradients, and deformation due to mounting stresses. Hand calculations can only predict system performance for uniform temperature changes, under the assumption that coefficient of thermal expansion (CTE) mismatch effects are negligible. An integrated STOP model was developed to investigate the effects of design modifications on the performance of the interferometer in detail, including CTE mismatch, and other three-dimensional effects. The model will be used to improve the design for a future spaceflight version of the interferometer. The STOP model was developed using the Comet SimApp (TM) Authoring Workspace which performs automated integration between Pro-Engineer (R), Thermal Desktop (R), MSC Nastran (TM), SigFit (TM), Code V (TM), and MATLAB (R). This is the first flight project for which LaRC has utilized Comet, and it allows a larger trade space to be studied in a shorter time than would be possible in a traditional STOP analysis. This paper describes the development of the STOP model, presents a comparison of STOP results for simple cases with hand calculations, and presents results of the correlation effort to bench-top testing of the interferometer. A trade study conducted with the STOP model which demonstrates a few simple design changes that can improve the performance seen in the lab is also presented.
引用
收藏
页数:15
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