arrow
返回

Efficient point cloud occlusion method for ultra wide-angle computer-generated holograms

delete2025-01-01
delete0
PRE
AI
J
Juan Martínez-Carranza *
J
José Martínez-Carranza *
K
Kozacki, Tomasz
DOI:10.1016/j.optlaseng.2024.108678delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Holographic Near Eye Displays (HNEDs) are meant to be the next generation of electronic devices that enable projecting three-dimensional images directly to the eyes. This is possible because computer-generated holograms (CGHs), the backbone of HNEDs, encode accurate wavefront information from virtual objects. An immersive experience requires that these CGHs can reproduce large and highly detailed objects. Moreover, an occlusion culling algorithm is necessary to remove back surfaces that do not contribute to the scene, which provides a better sense of reality. Although there is a vast family of occlusion culling methods, none of these, to the best of our knowledge, consider occlusion when calculating CGHs for field of views (FoV) larger than 90 degrees This work proposes a point cloud occlusion culling method for CGHs that projects images with angles larger than 90 degrees Our approach is based on the geometry of the non-pupil Near Eye Display configuration. It is shown that this configuration provides the proper geometrical conditions that can be used for setting fast occlusion culling of unwanted back points. Occlusion culling with our method is carried out with clouds larger than 7-million-point sources and CGHs resolution of 4 K and 8K. It is demonstrated that our method is at least 5 times faster than current solutions. Furthermore, occluded clouds are used for calculating CGHs that are numerically and optically reconstructed. The obtained results confirm that our method provides high-quality occluded clouds, enabling high-quality production of CGHs with large FoV.
Keyword:
Computer generated hologram
Ultra-wide angle
Occlusion culling
Cloud of points
Non-pupil near eye display
Holography

期刊

Optics and Lasers in Engineering 封面图
Optics and Lasers in Engineering
IF:
3.7
论文数:
7.3K
被引数:
1.7W

机构

I
instituto nacional de astrofisica, optica y electronica
学者数:
1.7K
论文数: 1.5K
被引数: 1
W
Warsaw University of Technology
学者数:
8.3K
论文数: 7.2K
被引数: 5.5K
引用论文

引用论文

err分享
err收藏
LED near-eye holographic display with a large non-paraxial hologram generation
err2022-11-14
err9
errOAAI
errKozacki, Tomasz; Chlipala, Maksymilian; Martinez-Carranza, Juan; Kukolowicz, Rafal; Idicula, Moncy Sajeev
err分享
err收藏
Development and validation of a needs‐based quality of life instrument for osteoarthritis
err2008-05-30
err0
PREAI
errAnne‐Maree Keenan; Stephen P. Mckenna; Lynda C. Doward; Philip G. Conaghan; Paul Emery; Alan Tennant
err分享
err收藏
Photoinduced Elimination in 2,3-Dihydro-2-tert-butyl-3-benzyl-4(1H)-­quinazolinone: Theoretical Calculations and Radical Trapping Using TEMPO Derivatives
err2012-03-29
err0
PREAI
errJaime Escalante; Fanny Cabrera-Rivera; Claudia Ortíz-Nava; Julio Hernández-Pérez; Minhhuy Hô
err分享
err收藏
Soluble Guanylate Cyclase α1–Deficient Mice: A Novel Murine Model for Primary Open Angle Glaucoma
err2013-03-20
err0
errOAAI
errEmmanuel S. Buys; Yu-Chieh Ko; Clemens Alt; Sarah R. Hayton; Alexander Jones; Laurel T. Tainsh; Ruiyi Ren; Andrea Giani; Maeva Clerté; Emma Abernathy; Robert E. T. Tainsh; Dong-Jin Oh; Rajeev Malhotra; Pankaj Arora; Nadine de Waard; Binglan Yu; Raphael Turcotte; Daniel Nathan; Marielle Scherrer-Crosbie; Stephanie J. Loomis; Jae H. Kang; Charles P. Lin; Haiyan Gong; Douglas J. Rhee; Peter Brouckaert; Janey L. Wiggs; Meredith S. Gregory; Louis R. Pasquale; Kenneth D. Bloch; Bruce R. Ksander
err分享
err收藏
学者 查看更多内容