Automated Multi-Sensor 3D Reconstruction for the Web

Author:

Julin Arttu,Jaalama Kaisa,Virtanen Juho-PekkaORCID,Maksimainen Mikko,Kurkela Matti,Hyyppä Juha,Hyyppä Hannu

Abstract

The Internet has become a major dissemination and sharing platform for 3D content. The utilization of 3D measurement methods can drastically increase the production efficiency of 3D content in an increasing number of use cases where 3D documentation of real-life objects or environments is required. We demonstrated a developed, highly automated and integrated content creation process of providing reality-based photorealistic 3D models for the web. Close-range photogrammetry, terrestrial laser scanning (TLS) and their combination are compared using available state-of-the-art tools in a real-life project setting with real-life limitations. Integrating photogrammetry and TLS is a good compromise for both geometric and texture quality. Compared to approaches using only photogrammetry or TLS, it is slower and more resource-heavy but combines complementary advantages of each method, such as direct scale determination from TLS or superior image quality typically used in photogrammetry. The integration is not only beneficial, but clearly productionally possible using available state-of-the-art tools that have become increasingly available also for non-expert users. Despite the high degree of automation, some manual editing steps are still required in practice to achieve satisfactory results in terms of adequate visual quality. This is mainly due to the current limitations of WebGL technology.

Funder

Academy of Finland

Business Finland

European Social Fund

European Regional Development Fund

Publisher

MDPI AG

Subject

Earth and Planetary Sciences (miscellaneous),Computers in Earth Sciences,Geography, Planning and Development

Reference87 articles.

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3. Delivering and using 3D models on the web: are we ready?

4. OpenGL ES Overviewhttps://www.khronos.org/opengles/

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