Chinese Optics, Volume. 15, Issue 5, 863(2022)
Review of optical systems′ desensitization design methods
[1] CARRIÓN-HIGUERAS L, CALATAYUD A, SASIAN J M. Improving as-built miniature lenses that use many aspheric surface coefficients with two desensitizing techniques[J]. Optical Engineering, 60, 051208(2021).
[2] VAN BELLE G T, MEINEL A B, MEINEL M P. The scaling relationship between telescope cost and aperture size for very large telescopes[J]. Proceedings of SPIE, 5489, 563-570(2004).
[3] STAHL H P, HENRICHS T. Preliminary multivariable cost model for space telescopes[J]. Proceedings of SPIE, 7731, 773104(2010).
[4] SHOLL M J, LAMPTON M L, ALDERING G, et al. SNAP telescope[J]. Proceedings of SPIE, 5487, 1473-1483(2004).
[5] [5] MENG Q Y. Research on err sensitivity they desensitization design method of reflective optical system[D]. Harbin: Harbin Institute of Technology, 2021. (in Chinese)
[6] SASIAN J. Lens desensitizing: theory and practice[J]. Applied Optics, 61, A62-A67(2022).
[7] KUPER T, HARRIS T. A new look at global optimization for optical design[J]. Photonics Spectra, 1, 151-160(1992).
[8] KUPER T. Global optimization finds alternative lens designs[J]. Laser Focus World, 5, 193-195(1992).
[9] FORBES G, JONES A. Global optimization in lens design[J]. Optics and Photonics News, 3, 22(1992).
[10] [10] JONES A. Global optimization in lens design[D]. Rochester: University of Rochester, 1992.
[11] STURLESI D, O'SHEA D. Global view of optical design space[J]. Optical Engineering, 30, 207-218(1991).
[12] MCGUIRE J P JR. Designing easily manufactured lenses using a global method[J]. Proceedings of SPIE, 6342, 63420O(2006).
[13] LIU X Y, GONG T T, JIN G F, et al. Design method for assembly-insensitive freeform reflective optical systems[J]. Optics Express, 26, 27798-27811(2018).
[14] [14] FUSE K. Method f designing a refractive reflective optical system method f designing a diffraction optical element: US, 6567226[P]. 20030520.
[15] [15] ROGERS J R. Using global synthesis to find toleranceinsensitive design fms[C]International Optical Design Conference, Optica Publishing Group, 2006: TuA4.
[16] [16] MA B, THOMPSON K P, SHARMA K, et al. . Applying slope constrained Qtype aspheres to reduce sensitivity of optical systems[C]Frontiers in Optics 2012, Optica Publishing Group, 2012: FTh3E. 3.
[17] MA B, SHARMA K, THOMPSON K P, et al. Mobile device camera design with Q-type polynomials to achieve higher production yield[J]. Optics Express, 21, 17454-17463(2013).
[18] THOMPSON K P, SCHIESSER E, ROLLAND J P. Why are freeform telescopes less alignment sensitive than a traditional unobscured TMA?[J]. Proceedings of SPIE, 9633, 963317(2015).
[19] FUERSCHBACH K, DAVIS G E, THOMPSON K P, et al. Assembly of a freeform off-axis optical system employing three
[20] LI CH, XUE CH X, YANG H F, . Optical system design of electronic endoscope objective with Q-type aspheres[J]. Acta Optica Sinica, 37, 0622001(2017).
[21] ISSHIKI M, GARDNER L, GREGORY G G. Automated control of manufacturing sensitivity during optimization[J]. Proceedings of SPIE, 5249, 343-352(2004).
[22] ISSHIKI M, SINCLAIR D C, KANEKO S. Lens design: global optimization of both performance and tolerance sensitivity[J]. Proceedings of SPIE, 6342, 63420N(2006).
[23] JEFFS M. Reduced manufacturing sensitivity in multi-element lens systems[J]. Proceedings of SPIE, 4832, IMC4(2002).
[24] ZHAO Y, GONG Y, HU Y N. Method of tolerance sensitivity reduction of zoom optical system[J]. Opto-Electronic Engineering, 36, 121-125(2009).
[25] QIN Z CH, WANG X D, REN CH M, et al. Design method for a reflective optical system with low tilt error sensitivity[J]. Optics Express, 29, 43464-43479(2021).
[26] DENG Y T, JIN G F, ZHU J. Design method for freeform reflective-imaging systems with low surface-figure-error sensitivity[J]. Chinese Optics Letters, 17, 092201(2019).
[27] MENG Q Y, WANG H Y, WANG W, et al. Desensitization design method of unobscured three-mirror anastigmatic optical systems with an adjustment-optimization-evaluation process[J]. Applied Optics, 57, 1472-1481(2018).
[28] SASIAN J M, DESCOUR M R. Power distribution and symmetry in lens systems[J]. Optical Engineering, 37, 1001-1004(1998).
[29] CHENG X M, WANG Y T, HAO Q, et al. Automatic element addition and deletion in lens optimization[J]. Applied Optics, 42, 1309-1317(2003).
[30] CHENG X M, WANG Y T, HAO Q. Study on tolerance sensitivity reduction in lens optimization[J]. Proceedings of SPIE, 5638, 36-42(2005).
[31] SCADUTO L C N, SASIAN J, STEFANI M A, et al. Two-mirror telescope design with third-order coma insensitive to decenter misalignment[J]. Optics Express, 21, 6851-6865(2013).
[32] MENG Q Y, WANG H Y, WANG W, . Sensitivity theoretical analysis and desensitization design method for reflective optical system based on optical path variation[J]. Optics and Precision Engineering, 29, 72-83(2021).
[33] [33] HASENAUER D. Optical System TolerancingA Key to Product Cost Reduction[Z]. Synopsys, Inc. , 2018.
[34] [34] SYNOPSYS. CODE V optimization reference manual[S]. Chapter 4 Err Functions, 2017.
[35] YABE A. Sensitivity control to surface irregularity[J]. Proceedings of SPIE, 6342, 634225(2006).
[36] YABE A. General method of sensitivity control for manufacturing errors[J]. Applied Optics, 49, 5175-5182(2010).
[37] BATES R. Performance and tolerance sensitivity optimization of highly aspheric miniature camera lenses[J]. Proceedings of SPIE, 7793, 779302(2010).
[38] [38] WANG ZH J. Theetical Basis of Optical Design[M]. Beijing: Science Press, 1965: 304314.
[39] HOPKINS H H, TIZIANI H J. A theoretical and experimental study of lens centring errors and their influence on optical image quality[J]. British Journal of Applied Physics, 17, 33-54(1966).
[40] CATALAN G. Design method of an astronomical telescope with reduced sensitivity to misalignment[J]. Applied Optics, 33, 1907-1915(1994).
[41] BETENSKY E I. Aberration correction and desensitization of an inverse-triplet object lens[J]. Proceedings of SPIE, 3482, 264-268(1998).
[42] WANG L R, SASIAN J M. Merit figures for fast estimating tolerance sensitivity in lens systems[J]. Proceedings of SPIE, 7652, 76521P(2010).
[43] ZHANG Y J, TANG Y, WANG P, . Method of tolerance sensitivity reduction of optical system design[J]. Opto-Electronic Engineering, 38, 127-133(2011).
[44] LIU ZH Y, LV ZH Y, GAO L X. Design method of infrared microscope optical system with lower aberration compensation[J]. Infrared and Laser Engineering, 50, 20200153(2021).
[45] ZHANG K, ZHONG X, WANG W, et al. Ultra-low-distortion optical system design based on tolerance sensitivity optimization[J]. Optics Communications, 437, 231-236(2019).
[46] DE ALBUQUERQUE B F C, LIAO L Y, MONTES A S, et al. A multi-objective approach in the optimization of optical systems taking into account tolerancing[J]. Proceedings of SPIE, 8131, 813105(2011).
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Qing-yu MENG, Zi-chang QIN, Cheng-ming REN, Yun-sheng QI. Review of optical systems′ desensitization design methods[J]. Chinese Optics, 2022, 15(5): 863
Category: Review
Received: May. 10, 2022
Accepted: --
Published Online: Sep. 29, 2022
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