BAGASKARA, DANANG PANGESTU GUSTI (2021) PENGGUNAAN MARKERLESS AUGMENTED REALITY DENGAN ALGORITMA SIMULATION LOCALIZATION AND MAPPING SEBAGAI MEDIA DALAM MENAMPILKAN DESAIN ARSITEKTUR RUMAH. Diploma thesis, UPN "Veteran" Yogyakarta.
![]() |
Text
2. ABSTRAK.pdf Download (72kB) |
![]() |
Text
3. Cover (1).pdf Download (244kB) |
![]() |
Text
6. Daftar Pustaka (1).pdf Download (87kB) |
![]() |
Text
6. Daftar Pustaka.pdf Download (87kB) |
![]() |
Text
Daftar Isi (6).pdf Download (104kB) |
![]() |
Text
HALAMAN PENGESAHAN PEMBIMBING .pdf Download (107kB) |
![]() |
Text
BAB I - V revisi sidang.pdf Restricted to Repository staff only Download (15MB) |
Abstract
Abd El Aty, H. (2016). An Interactive City Framework: Mobile Cloud Computing
Approach . Augmented reality framework for an interactive three-dimensional city., 5-
10.
Arif, Muchamad, & Hakim, Pengembangan Desain Bangunan Menggunakan Augmented
Reality Septian Rahman. (2018). . Prosiding Seminar Nasional KALUNI, 1, 203–209.
Bae, G.-F. H., & White, J. (2017). High-precision Vision-based Mobile Augmented Reality
System for Context-aware Architectural, Engineering, Construction, and Facility
Management (AEC/FM) Applications. Visualization in Engineering, 1-13.
Chen, L., & Tang, W.,. (2018). SLAM-Based Dense Surface Reconstraction in Monoculer
Minimally Invasive Surgery and Its Application to Augmented Reality. Computer
Method and Progress in Biomedicine, 135-146.
Chruchill, & Snowdon. (2018). Collaborative Virtual Environtment: An Introductory
Review of Issues And Systems. Springer-Verlag, 3-15.
Cirulis, A., & Brigmanis, K. B. (2016). 3D Outdoor Augmented Reality for Architecture and
Urban Planning. Procedia Computer Science, 25, 71–79.
Egodagamage, R., & Tuceryan, M.,. (2017). Distributed Monocular Visual Slam as a Basis
for a Collabrative Augmented Reality Framwork. Special Section on Cyberworlds, 23-
34
Fauziah, Y.,. (2014). Arsitektur Cloud Computing Pada Sistem Informasi Desa Sebagai
Layanan Akses Informasi Desa. SemnasIF 2014, 1-11.
Flores, H. (2012). Towards mobile cloud applications Offloading resource-intensive tasks
to hybrid clouds. Hybrid Clouds, 1-26.
Fominykh, M., & Forland, E. P. (2016). Educational Visualizations in 3D Collaborative
Virtual Environments : a methodology. Educational Visualizations in 3D CVE, 33-
45.
Han, A., & Mora, P. (2017). Emperical Assesment of a RGB-D Sensor on Motion Capture
and Action Recognition for Construction Worker Monitoring. Visualization in
Engineering, 1-13.
Huang, Z. (2016). CloudRidAR: A Cloud-based Architecture for Mobile Augmented
Reality. System and Media Laboratory, 1-6.
86
Huang, B.-R., Lin, C. H., & Lee, C.-H. (2017). Mobile augmented reality based on cloud
computing. Anti-Counterfeiting, Security, and Identification.
doi:10.1109/icasid.2012.6325354
Moezzi, R., & Krcmarik, D.,. (2020). Hybrid SLAM Modelling of Autonomous Robot
With Augmented Reality. Proceedings, 461-477.
Lin, B. P., Wen-Hsiang Tsai, Wu, C. C., Hsu, P. H., Huang, J. Y., & Tsai-Hwa Liu.
(2016). The Design of Cloud-Based 4G/LTE for Mobile Augmented Reality with Smart
Mobile Devices. IEEE Seventh International Symposium on Service-Oriented System
Engineering. doi:10.1109/sose.2013.57
Li, J., & Yang, B. (2019). Survey and Evaluation of Monocular Visual-Inertia SLAM
Algorithms for Augmented Reality, Virtual Reality & Intelligent Hardware, 386-410.
Polvi, J., & Taketomi, T.,. (2016). SlideAR : A 3D Positioning Method for SLAM-based
Handheld Augmented Reality. Computer & Graphic 55, 33-43.
Rohacz, A., & WeiBenfels, S.,. (2020). Concept for The Comparison of Intralogistics
Design With Real Factory Layout Using Augmented Reality, SLAM and MarkerBased Tracking. CIRP Conference on Manufacturing Systems, 341-346.
Tang, R. (2013). Mathematical Methods for Camera Self- Calibration in Photogrammetry
and Computer Vision. University of Stuttgart, Munchen.
Wang, X. (2017). Augmented Reality in Architecture and Design: Potentials and Challenges
for Application. International Journal of Architectural Computing, 7(2), 309–326.
Zou, D., & Tan, P.,. (2019). Collaborative Visual SLAM for Multiple Agents : A Brief
Survey. Virtual Reality & Intelligence Hardware, 461-482
Item Type: | Thesis (Diploma) |
---|---|
Uncontrolled Keywords: | Augmented Reality, 3D model, Arsitektur, Simulation Localization And Mapping |
Subjects: | Q Science > Q Science (General) |
Divisions: | Faculty of Engineering, Science and Mathematics > School of Engineering Sciences |
Depositing User: | Eny Suparny |
Date Deposited: | 01 Jul 2022 06:07 |
Last Modified: | 01 Jul 2022 06:11 |
URI: | http://eprints.upnyk.ac.id/id/eprint/30215 |
Actions (login required)
![]() |
View Item |