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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 工程科學及海洋工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/49457
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DC 欄位值語言
dc.contributor.advisor李佳翰
dc.contributor.authorYu-Jou Changen
dc.contributor.author張予柔zh_TW
dc.date.accessioned2021-06-15T11:29:35Z-
dc.date.available2021-08-30
dc.date.copyright2016-08-30
dc.date.issued2016
dc.date.submitted2016-08-16
dc.identifier.citation[1] G. Lippmann, 'Epreuves reversibles. photographies integrals,' Comptes-Rendus Academie des Sciences, vol. 146, pp. 446-451, 1908.
[2] X. Xiao, B. Javidi, M. Martinez-Corral, and A. Stern, 'Advances in three-dimensional integral imaging: sensing, display, and applications [Invited],' Applied optics, vol. 52, pp. 546-560, 2013.
[3] J.-H. Park, K. Hong, and B. Lee, 'Recent progress in three-dimensional information processing based on integral imaging,' Applied Optics, vol. 48, pp. H77-H94, 2009.
[4] M. Cho, M. Daneshpanah, I. Moon, and B. Javidi, 'Three-dimensional optical sensing and visualization using integral imaging,' Proceedings of the IEEE, vol. 99, pp. 556-575, 2011.
[5] H. Kim, J. Hahn, and B. Lee, 'The use of a negative index planoconcave lens array for wide-viewing angle integral imaging,' Optics express, vol. 16, pp. 21865-21880, 2008.
[6] Y. Kim, J.-H. Park, H. Choi, S. Jung, S.-W. Min, and B. Lee, 'Viewing-angle-enhanced integral imaging system using a curved lens array,' Optics express, vol. 12, pp. 421-429, 2004.
[7] J.-S. Jang and B. Javidi, 'Large depth-of-focus time-multiplexed three-dimensional integral imaging by use of lenslets with nonuniform focal lengths and aperturesizes,' Optics letters, vol. 28, pp. 1924-1926, 2003.
[8] A. Castro, Y. Frauel, and B. Javidi, 'Integral imaging with large depth of field using an asymmetric phase mask,' Optics express, vol. 15, pp. 10266-10273, 2007.
[9] J. Wang, S. Shen, Y. Yang, J. Bu, X. Zhao, and X. Yuan, 'Enhanced depth of field in integral imaging for 3D display with a cubic phase plate coded camera array,' Journal of Display Technology, vol. 8, pp. 577-581, 2012.
[10] J. Arai, F. Okano, H. Hoshino, and I. Yuyama, 'Gradient-index lens-array method based on real-time integral photography for three-dimensional images,' Applied optics, vol. 37, pp. 2034-2045, 1998.
[11] S.-H. Hong, J.-S. Jang, and B. Javidi, 'Three-dimensional volumetric object reconstruction using computational integral imaging,' Optics Express, vol. 12, pp. 483-491, 2004.
[12] Q.-D. Chen, D. Wu, L.-G. Niu, J. Wang, X.-F. Lin, H. Xia, et al., 'Phase lenses and mirrors created by laser micronanofabrication via two-photon photopolymerization,' Applied Physics Letters, vol. 91, p. 171105, 2007.
[13] T.-T. Chung, Y.-T. Tu, Y.-H. Hsueh, S.-Y. Chen, and W.-J. Li, 'Micro-lens Array Fabrication by Two Photon Polymerization Technology,' International Journal of Automation and Smart Technology, vol. 3, pp. 131-135, 2013.
[14] G. J. Swanson, 'Binary optics technology: the theory and design of multi-level diffractive optical elements,' DTIC Document1989.
[15] M. S. Millán, J. Otón, and E. Pérez-Cabré, 'Chromatic compensation of programmable Fresnel lenses,' Optics express, vol. 14, pp. 6226-6242, 2006.
[16] G. K. Skinner, 'Design and imaging performance of achromatic diffractive–refractive x-ray and gamma-ray Fresnel lenses,' Applied optics, vol. 43, pp. 4845-4853, 2004.
[17] Y. Wang, W. Yun, and C. Jacobsen, 'Achromatic Fresnel optics for wideband extreme-ultraviolet and X-ray imaging,' Nature, vol. 424, pp. 50-53, 2003.
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[19] P.-H. Cu-Nguyen, A. Grewe, P. Feßer, A. Seifert, S. Sinzinger, and H. Zappe, 'An imaging spectrometer employing tunable hyperchromatic microlenses,' Light: Science & Applications, vol. 5, p. e16058, 2016.
[20] M. Hain, W. von Spiegel, M. Schmiedchen, T. Tschudi, and B. Javidi, '3D integral imaging using diffractive Fresnel lens arrays,' Optics express, vol. 13, pp. 315-326, 2005.
[21] G. Li, S.-C. Kim, and E.-S. Kim, 'Viewing quality-enhanced reconstruction of 3-D object images by using a modified computational integral-imaging reconstruction technique,' 3D Research, vol. 3, pp. 1-9, 2012.
[22] G. J. Swanson and W. B. Veldkamp, 'Infrared applications of diffractive optical elements,' in 1988 Los Angeles Symposium--OE/LASE'88, 1988, pp. 155-162.
[23] J. Kirz, 'Phase zone plates for x rays and the extreme uv,' JOSA, vol. 64, pp. 301-309, 1974.
[24] M. Hutley and R. Stevens, 'The use of a zone-plate monochromator as a displacement transducer,' Journal of Physics E: Scientific Instruments, vol. 21, p. 1037, 1988.
[25] R. C. Gonzalez and R. E. Woods, 'Digital image processing,' Nueva Jersey, 2008.
[26] S.-C. Kim, C.-K. Kim, and E.-S. Kim, 'Depth-of-focus and resolution-enhanced three-dimensional integral imaging with non-uniform lenslets and intermediate-view reconstruction technique,' 3D Research, vol. 2, pp. 1-9, 2011.
[27] J.-S. Park, D.-C. Hwang, D.-H. Shin, and E.-S. Kim, 'Enhanced-resolution computational integral imaging reconstruction using an intermediate-view reconstruction technique,' Optical Engineering, vol. 45, pp. 117004-117004-7, 2006.
[28] D.-C. Hwang, J.-S. Park, S.-C. Kim, D.-H. Shin, and E.-S. Kim, 'Magnification of 3D reconstructed images in integral imaging using an intermediate-view reconstruction technique,' Applied optics, vol. 45, pp. 4631-4637, 2006.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/49457-
dc.description.abstract在積體成像的模擬中,主要包含兩大主軸,一個是三維資訊的接收,另一個是三維資訊的重建。此系統使用兩種光學軟體來進行模擬。利用code V的光學模擬來控制系統的光學特性;再來利用LightTools的光學追跡及照明功能,來模擬系統的影像成像特性。在整個模擬系統中,除了所需要的感光元件之外,微陣列透鏡的設置決定了整個系統大部份的參數控制。在本論文中,我們使用相位型菲涅耳波帶片做為積體成像中的微透鏡陣列;我們討論了菲涅耳波帶片對於色像差的影響及其模擬結果,同時我們也發展了重建影像計算方法及其應用。zh_TW
dc.description.abstractAn optical system of picked-up and reconstruction for the three-dimensional information was designed. This system simulated by using code V optical design software and LightTools illumination design software, including lenslet array, receiver, and camera, has been calculated. The test images of the observed object can be obtained when light is penetrated through lenslet array. Then the image of the observed object can be reconstructed by using the computational integral-imaging reconstruction (CIIR) method. Thus, a commercial light field camera uses microlens array for integral imaging system is applicable. Lastly, we apply the phase Fresnel lens array to replace the microlens array, and diffractive lens array simulation concepts are demonstrated. The parameters of characteristic in the integral system applications are analyzed.en
dc.description.provenanceMade available in DSpace on 2021-06-15T11:29:35Z (GMT). No. of bitstreams: 1
ntu-105-R03525028-1.pdf: 2069013 bytes, checksum: d540d62c7f19914f777b772bd9bee51c (MD5)
Previous issue date: 2016
en
dc.description.tableofcontents口試委員會審定書………………………………………………………i
誌謝……………………………………………………………………ii
中文摘要………………………………………………………………iii
ABSTRACT………………………………………………………………iv
STATEMENT OF CONTRIBUTION…………………………………………v
CONTENTS………………………………………………………………vi
LIST OF FIGURES …………………………………………………vii
LIST OF TABLES ………………………………………………ix
Chapter 1 Motivation and Introduction……………… 1
1-1 Motivation………………………………………………1
1-2 Literature Review…………………………………………2
1-3 Framework………………………………………………5
Chapter 2 Principle and Methodology………………………6
2-1 Principle of Integral Imaging………………………6
2-2 Principle of Fresnel Zone Plate………………………10
2-3 Simulation Methods………………………………………15
Chapter 3 Results and Discussion………………………19
3-1 System design of the diffractive lens……………19
3-2 Reconstruction of the Integral Imaging……………30
Chapter 4 Conclusions and Future Work……………… 45
4-1 Conclusions…………………………………………………45
4-2 Future work………………………………………………46
References……………………………………………………………47
dc.language.isoen
dc.title多焦繞射透鏡陣列應用在積體成像zh_TW
dc.titleIntegral imaging using multifocal diffractive lens arraysen
dc.typeThesis
dc.date.schoolyear104-2
dc.description.degree碩士
dc.contributor.oralexamcommittee黃君偉,張恆華,鍾添東,鄭信鴻
dc.subject.keyword積體成像,重建影像計算方法,繞射透鏡陣列,色像差,zh_TW
dc.subject.keywordIntegral imaging,computational integral-imaging reconstruction,diffractive lens array,chromatic aberration,en
dc.relation.page49
dc.identifier.doi10.6342/NTU201602726
dc.rights.note有償授權
dc.date.accepted2016-08-17
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept工程科學及海洋工程學研究所zh_TW
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