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Distributed genetic algorithm for optimal planar arrays of aperture synthesis telescope
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作者 贺小箭 唐新怀 +1 位作者 尤晋元 文建国 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2004年第3期419-425,共7页
Sparse arrays of telescopes have a limited (u, v)-plane coverage. In this paper, an optimization method for designing planar arrays of an aperture synthesis telescope is proposed that is based on distributed genetic a... Sparse arrays of telescopes have a limited (u, v)-plane coverage. In this paper, an optimization method for designing planar arrays of an aperture synthesis telescope is proposed that is based on distributed genetic algorithm. This distributed genetic algorithm is implemented on a network of workstations using community communication model. Such an aperture synthesis system performs with imperfection of (u, v) components caused by deviations and(or) some missing baselines. With the maximum (u, v)-plane coverage of this rotation-optimized array, the image of the source reconstructed by inverse Fourier transform is satisfactory. 展开更多
关键词 distributed genetic algorithm optical aperture synthesis optimum planar array (u v) -spectrum sampling.
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Optimum linear array of an optical aperture synthesis telescope 被引量:2
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作者 WEN Jianguo JIN Shengzhen NING Shunian 《Chinese Science Bulletin》 SCIE EI CAS 2002年第23期1964-1968,共5页
Measuring out successively the degree of coherence of the source produced by any couple of the small apertures via rotating an array composed of the small aperture telescopes, and synthesizing them into the (u, v) cov... Measuring out successively the degree of coherence of the source produced by any couple of the small apertures via rotating an array composed of the small aperture telescopes, and synthesizing them into the (u, v) coverage of the source, the brightness distribution of the source can be obtained by the inverse Fourier transform of the degree of coherence with much higher resolution than from a single telescope. This article discusses the arrangements of the small apertures in the linear array, and found a method to decide the quality of the arrangements, the judgment factorε is introduced to calculate the arrangements in quantity. There are 1.5x1011 possibilities for 11 apertures. Therefore, the computer procedures are programmed to select the optimum arrangements. The effect of the simulation of the aperture synthesis is given for the linear array. The simulation method can also be used in the nonlinear arrays. 展开更多
关键词 OPTICAL APERTuRE synthesis OPTIMuM linear array JuDGMENT factor (u v)-spectrum sampling point SPREAD function.
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