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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 資訊網路與多媒體研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/69142
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dc.contributor.advisor歐陽明(Ming Ouhyoung)
dc.contributor.authorHong-Shiang Linen
dc.contributor.author林宏祥zh_TW
dc.date.accessioned2021-06-17T03:09:38Z-
dc.date.available2021-08-03
dc.date.copyright2018-08-03
dc.date.issued2018
dc.date.submitted2018-07-20
dc.identifier.citation[1] 360 camera online. http://360cameraonline.com/known-360-cameras/.
[2] Facebook Surround 360. https://facebook360.fb.com/facebook-surround-360/.
[3] Fraunhofer hhi omnicam 360. https://www.hhi.fraunhofer.de/en/departments/ vit/technologies-and-solutions/capture/panoramic-uhd-video/omnicam-360. html.
[4] Google Cardboard. https://vr.google.com/cardboard/.
[5] Google Jump. https://vr.google.com/jump/.
[6] Hugin: Panorama photo stitcher. http://hugin.sourceforge.net/.
[7] Kickstarter. https://www.kickstarter.com.
[8] Nokia ozo. https://ozo.nokia.com.
[9] Oculus Rift. https://www.oculus.com/rift/.
[10] Ptgui. https://www.ptgui.com/.
[11] Samsung gear 360. http://www.samsung.com/global/galaxy/gear-360/.
[12] Samsung Gear VR. https://www.samsung.com/global/galaxy/gear-vr/.
[13] Spheron. https://www.spheron.com/home.html.
[14] Virtual Reality Society. https://www.vrs.org.uk/virtual-reality-applications/.
[15] R. Aggarwal, A. Vohra, and A. M. Namboodiri. Panoramic stereo video with a single camera. In Proceedings of the International Conference on Computer Vision and Pattern Recognition (CVPR 2016), 2016.
[16] A.S.Amini,M.Varshosaz,andM.Saadatseresht.Evaluatinganewstereopanorama system based on stereo cameras. International Journal of Scientific Research in Inventions and New Ideas, 2014.
[17] R. Anderson, D. Gallup, J. T. Barron, J. Kontkanen, N. Snavely, C. Hernández, S. Agarwal, and S. M. Seitz. Jump: Virtual reality video. In Proceedings of ACM SIGGRAPH Asia 2016, pages 198:1 – 198:13, 2016.
[18] Z. Arican and P. Frossard. Dense disparity estimation from omnidirectional images. In Proceedings of the IEEE International Conference on Advanced Video and Signal based Surveillance (ICAVS 2007), 2007.
[19] M. Bertalmío, A. L. Bertozzi, and G. Sapiro. Navier-stokes, fluid dynamics, and im- age and video inpainting. In Proceedings of the International Conference on Com- puter Vision and Pattern Recognition (CVPR 2001), pages 355–362, 2001.
[20] C.-Y. Chen and H.-J. Chien. Geometric calibration of a multi-layer lidar sys- tem and image sensors using plane-based implicit laser parameters for textured 3-d depth reconstruction. Journal of Visual Communication and Image Representation, 25(4):659–669, 2014.
[21] D.Chen,M.Ardabilian,andL.Chen.AFastTrilateralFilterbasedAdaptiveSupport Weight Method for Stereo Matching. IEEE Transactions on Circuits and Systems for Video Technology, PP(99):1–14, 2014.
[22] V. Couture, M. S. Langer, and S. Roy. Panoramic stereo video textures. In Pro- ceedings of IEEE International Conference on Computer Vision (ICCV 2011), pages 1251–1258, 2011.
[23] V.C.Couture,M.S.Langer,andS.Roy.Omnistereovideotextureswithoutghosting. In Proceedings of International Conference on 3D Vision (3DV 2013), pages 64–70, 2013.
[24] V. C. Couture and S. Roy. The omnipolar camera: A new approach to stereo immer- sive capture. In Proceedings of IEEE International Conference on Computational Photography (ICCP 2013), pages 1–9, 2013.
[25] J. Fujiki, A. Torii, and S. Akaho. Epipolar geometry via rectification of spherical images. In Proceedings of International conference on Computer vision/computer graphics collaboration techniques, pages 461–471, 2007.
[26] Y. Furukawa and C. Hernändez. Multi-view stereo: A tutorial. Foundations and Trends in Computer Graphics and Vision, 9(1-2):1 – 148, 2015.
[27] J. Gluckman, S. Nayar, and K. Thorek. Real-time omnidirectional and panoramic stereo. In Proceedings of Defense Advanced Research Projects Agency, Image Un- derstanding Workshop (DARPA 1998), pages 299–303, 1998.
[28] X.Y.Guan,L.-K.Shark,G.Hall,andW.Deng.Calibrationofrotatinglinespherical camera based on checkerboard pattern on multiple planes and its accuracy assess- ment. In Proceedings of the UK postgraduate workshop of British Machine Vision Conference (BMVC 2010/), pages 8.1–8.10, 2010. 8.
[29] K. He, J. Sun, and X. Tang. Guided image filtering. In Proceedings of the European Conference on Computer Vision and Pattern Recognition (ECCV 2010), pages 1–14, 2010.
[30] H.-C. Huang and Y.-P. Hung. Panoramic stereo imaging system with automatic dis- parity warping and seaming. Graphical Models and Image Processing, 60(3):196– 208, 1998.
[31] S.-K. Huang, H.-S. Lin, and M. Ouhyoung. Effective omnistereo panorama video generation by deformable spheres. In ACM SIGGRAPH 2017 Posters, pages 22:1– 22:2, 2017.
[32] W. Jiang and J. Lu. Panoramic 3d reconstruction by fusing color intensity and laser range data. In IEEE International Conference on Intelligent Robots and Systems (IROS 2004), pages 947–953, 2006.
[33] W. Jiang, M. Okutomi, and S. Sugimoto. Panoramic 3d reconstruction using ro- tational stereo camera with simple epipolar constraints. Proceedings of the Inter- national Conference on Computer Vision and Pattern Recognition (CVPR 2006), 1:371–378, 2006.
[34] J.KannalaandS.S.Brandt.Agenericcameramodelandcalibrationmethodforcon- ventional, wide-angle, and fish-eye lenses. IEEE Transactions on Pattern Analysis and Machine Intelligence, 28:1335–1340, 2006.
[35] T. Kawanishi, K. Yamazawa, H. Iwasa, H. Takemura, and N. Yokoya. Generation of high-resolution stereo panoramic images by omnidirectional imaging sensor using hexagonal pyramidal mirrors. In Proceedings of the International Conference on Pattern Recognition (ICPR 1998), pages 485–489, 1998.
[36] R. Konrad, D. G. Dansereau, A. Masood, and G. Wetzstein. Spinvr: Towards live- streaming 3d virtual reality video. ACM transactions on Graphics, 36(6):209:1– 209:12, 2017.
[37] Z. Lee and T. Q. Nguyen. Multi-resolution disparity processing and fusion for large high-resolution stereo image. IEEE Transactions on Multimedia, 17(6):792–803, 2015.
[38] Y. Li, H.-Y. Shum, C.-K. Tang, and R. Szeliski. Stereo reconstruction from multi- perspective panoramas. IEEE Transactions on Pattern Analysis and Machine Intel- ligence, 26(1):45–62, 2004.
[39] S. Lin and R. Bajcsy. High resolution catadioptric omni-directional stereo sensor for robot vision. In Proceedings of IEEE International Conference on Robotics and Automation (ICRA 2003), pages 1694–1699, 2003.
[40] K. Matzen, M. F. Cohen, B. Evans, J. Kopf, and R. Szeliski. Low-cost 360 stereo photography and video capture. ACM transactions on Graphics, 36(4):148:1– 148:12, 2017.
[41] S. K. Nayar. Sphereo: Recovering depth using a single camera and two specular spheres. In Proceedings of SPIE Conference on Optics, Illumination, and Image Sensing for Machine Vision (SPIE 1988), pages 245–254, 1988.
[42] S. Nene. Stereo with mirrors. In Proceedings of IEEE International Conference on Computer Vision (ICCV 1998), pages 1087–1094, 1998.
[43] M. Okutomi and T. Kanade. A multiple-baseline stereo. IEEE Transactions on Pattern Analysis and Machine Intelligence, 15(4):353–363, 1993.
[44] J. A. Parian and A. Gruen. Panoramic camera calibration using 3D straight lines. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XXXVI, 2005.
[45] S. Peleg, M. Ben-Ezra, and Y. Pritch. Omnistereo: Panoramic stereo imaging. IEEE Transactions on Pattern Analysis and Machine Intelligence, 23(3):279–290, 2001.
[46] Y. Pritch, M. Ben-Ezra, and S. Roy. Optics for omnistereo imaging. In In Founda- tions of Image Understanding (IFIU 2001), pages 447–467, 2001.
[47] C.Richardt,Y.Pritch,H.Zimmer,andA.Sorkine-Hornung.Megastereo:Construct- ing high-resolution stereo panoramas. In Proceedings of the International Confer- ence on Computer Vision and Pattern Recognition (CVPR 2013), pages 1256–1263, 2013.
[48] D. Scaramuzza. A practical toolbox for calibrating omnidirectional cameras, 2007.
[49] D.ScharsteinandR.Szeliski.Ataxonomyandevaluationofdensetwo-framestereo correspondence algorithms. International Journal of Computer Vision, 47(1-3):7 – 42, 2002.
[50] D. Schneider and H.-G. Maas. Geometric modelling and calibration of a high reso- lution panoramic camera. Optical 3D Measurement Techniques, II:122–129, 2003.
[51] M. Schönbein and A. Geiger. Omnidirectional 3d reconstruction in augmented man- hattan worlds. In Proceedings of International Conference on Intelligent Robots and Systems (IROS 2014), 2014.
[52] H.-Y. Shum, K.-T. Ng, and S.-C. Chan. A virtual reality system using the concen- tric mosaic: construction, rendering, and data compression. IEEE Transactions on Multimedia, 7(1):85 – 95, 2005.
[53] D. Southwell, A. Basu, M. Fiala, and J. Reyda. Panoramic stereo. In Proceedings of the International Conference on Pattern Recognition (ICPR 1996), 1996.
[54] C.SunandS.Peleg.Fastpanoramicstereomatchingusingcylindricalmaximumsur- faces. IEEE Transactions on Systems, Man and Cybernetics, 34(1):760–765, 2004.
[55] T. Svoboda and T. Pajdla. Epipolar geometry for central catadioptric cameras. In- ternational Journal of Computer Vision, 49(1):23–37, 2002.
[56] R. Swaminathan and S. Nayar. Non-Metric Calibration of Wide-Angle Lenses and Polycameras. IEEE Transactions on Pattern Analysis and Machine Intelligence, 22(10):1172 – 1178, 2000.
[57] K.TanakaandS.Tachi.TORNADO:Omnistereovideoimagingwithrotatingoptics. IEEE Transactions on Visualization and Computer Graphics, 11(6):614–625, 2005.
[58] S. Tzavidas and A. K. Katsaggelos. A multicamera setup for generating stereo panoramic video. IEEE Transaction on Multimedia, 7(5):880 – 890, 2005.
[59] Y. Xu, Q. Zhou, L. Gong, M. Zhu, X. Ding, and R. K. F. Teng. High-speed simul- taneous image distortion correction transformations for a multicamera cylindrical panorama real-time video system using FPGA. IEEE Transactions on Circuits and Systems for Video Technology, 24(6):1061–1069, 2014.
[60] R. Zabih and J. Woodfill. Non-parametric local transforms for computing visual correspondence. In Proceedings of the Third European Conference on Computer Vision (ECCV 1994), pages 151 – 158, 1994.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/69142-
dc.description.abstract本論文提出一個輕便式的多視角相機以及演算法以拍攝並生成全景立體圖。這個多視角相機只由四個魚眼相機構成。只經由四個視角生成全景圖非常具有挑戰性,因為各個相機的視角非常不一樣,還有魚眼影像本身會有投影扭曲,以及包含暗暈(vignetting),對比降低(contrast loss),和模糊(blurriness)等畫質衰退的問題。 為了處理這些問題,本論文提出一套系列演算法,進行多視角影像校正,估計場景深度,並且生成全景立體影像。本論文提出的多視角相機將多個魚眼相機緊密地集合在輕量且低成本的裝置。伴隨的系列演算法可以將此多視角相機拍攝的影像合成為視覺上舒適自然的全景立體影像。現在已有一個相機原型產生,並且應用在深度多變的場景拍攝當中。實驗結果顯示本論文提出的多視角相機模型與演算法可以有效地產生在一般常見的虛擬實境顯示器播放的全景立體圖。zh_TW
dc.description.abstractThis dissertation proposes a low-cost and portable polycamera system and accompanying methods for capturing and synthesizing stereoscopic 360° panoramas. The polycamera consists of only four cameras with fisheye lenses. Synthesizing panoramas from only four views is challenging because the cameras view very differently and the captured images have significant distortions and color degradation including vignetting, contrast loss and blurriness. For coping with these challenges, this dissertation proposes methods for rectifying the polyview images, estimating depth of the scene and synthesizing stereoscopic panoramas. The proposed camera is compact in size, light in weight and inexpensive in cost. The proposed methods allow synthesizing visually pleasing stereoscopic 360° panoramas using the images captured with the proposed polycamera. A prototype polycamera has been built and tested on a set of scenes with different characteristics on depth ranges and depth variations. The experiments show that the proposed camera and methods are effective for generating stereoscopic 360° panoramas that can be viewed with popular virtual reality displays.en
dc.description.provenanceMade available in DSpace on 2021-06-17T03:09:38Z (GMT). No. of bitstreams: 1
ntu-107-D00944011-1.pdf: 41767222 bytes, checksum: a42a362cef1c1be9c240e33a4e44c77c (MD5)
Previous issue date: 2018
en
dc.description.tableofcontents口試委員會審定書 iii
誌謝 v
Acknowledgements vii
摘要 ix
Abstract xi
1 Introduction 1
1.1 Background................................. 1
1.2 Motivation.................................. 2
1.3 TheProposedPolycamera ......................... 4
1.4 Challenges.................................. 5
1.5 ProposedMethods ............................. 7
2 Related Work 9
2.1 Omnistereocameras. ............................ 9 2.2 Omnidirectionalcameracalibration. .................... 10 2.3 Omnidirectionaldepthestimation. ..................... 11
3 Polyview Image Rectification 15
3.1 PolycameraCalibration........................... 16
3.2 ViewTransformation ............................ 17
4 Panoramic Depth Reconstruction 23
4.1 LabelRepresentation ............................ 24
4.2 TrinocularStereoMatching......................... 26
4.3 DepthAssignment ............................. 28
5 Stereoscopic Panorama Synthesis 31
5.1 TheOmnistereoProjectionModel ..................... 31
5.2 ForwardandInverseMapping ....................... 33
5.3 Rasterization-basedRayTracing ...................... 35
6 Experimental Results 39
7 Conclusion and Future Work 51
Bibliography 53
dc.language.isozh-TW
dc.subject多視角相機zh_TW
dc.subject全景立體相機zh_TW
dc.subject全向性立體全景圖zh_TW
dc.subjectPolycamerasen
dc.subjectOmnistereo panoramasen
dc.subjectStereoscopic 360° camerasen
dc.title一種用於全景立體影像生成的輕便式多視角相機 系統zh_TW
dc.titleA Low-Cost Portable Polycamera for Stereoscopic 360° Panorama Imaging.en
dc.typeThesis
dc.date.schoolyear106-2
dc.description.degree博士
dc.contributor.oralexamcommittee陳佩君,葉正聖,莊永裕,梁容輝,傅楸善
dc.subject.keyword全向性立體全景圖,多視角相機,全景立體相機,zh_TW
dc.subject.keywordOmnistereo panoramas,Polycameras,Stereoscopic 360° cameras,en
dc.relation.page59
dc.identifier.doi10.6342/NTU201801748
dc.rights.note有償授權
dc.date.accepted2018-07-23
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept資訊網路與多媒體研究所zh_TW
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