• Opto-Electronic Engineering
  • Vol. 33, Issue 9, 42 (2006)
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Design of phase distribution of binary optics elements based on immune genetic algorithm[J]. Opto-Electronic Engineering, 2006, 33(9): 42 Copy Citation Text show less
    References

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    [2] B.-K CHOI.Multiobjective Optimum Design of Rotor-Bearing Systems With Dynamic Constraints Using Immune Genetic Algorithm[A].Proceedings of IEEE International Conference on Systems and Man and Cybernetics (SMC)[C].Japan:IEEE,1996.108-113.

    [3] Shun Lien CHUANG.Physics of optoelectronic devices[M].USA:John Wiley & Sons,Inc,1995.

    [8] GE Hong,MAO Zong-yuan.Immune Algorithm[J].Proceedings of the World Congress on Intelligent Control and Automation (WCICA),2002,3:1784-1788.

    [9] Sie Poon CHANG,Jin-Min KUO,Yar-Ping LEE,et al.Transformation of Gaussian to coherent uniform beams by inverse-Gaussian transmittive filters[J].Applied Optics,1998,37(4):747-752.

    [11] BOKOR Nandor,DAVIDSON Nir.Beam shaping with diffuse light by use of a single reflection[J].Applied Optics,2001,40(13):2132-2137.

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    [2] Wen Changli, Ji Jiarong, Dou Wenhua, Song Yansheng. The Ameliorated Adaptive-Additive Method and Its Applying in the Designing of Diffractive Optical Element[J]. Acta Optica Sinica, 2010, 30(9): 2473

    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Design of phase distribution of binary optics elements based on immune genetic algorithm[J]. Opto-Electronic Engineering, 2006, 33(9): 42
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