High quality 3D reconstruction of indoor environments using RGB-D sensors

© 2017 IEEE. High-quality 3D reconstruction of large-scale indoor scene is the key to combine Simultaneous Localization And Mapping (SLAM) with other applications, such as building inspection and construction monitoring. However, the requirement of global consistency brings challenges to both locali...

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Main Authors: Wang, J., Huang, S., Zhao, L., Ge, J., He, S., Zhang, C., Wang, Xiangyu
Format: Conference Paper
Published: IEEE 2018
Online Access:http://hdl.handle.net/20.500.11937/68563
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author Wang, J.
Huang, S.
Zhao, L.
Ge, J.
He, S.
Zhang, C.
Wang, Xiangyu
author_facet Wang, J.
Huang, S.
Zhao, L.
Ge, J.
He, S.
Zhang, C.
Wang, Xiangyu
author_sort Wang, J.
building Curtin Institutional Repository
collection Online Access
description © 2017 IEEE. High-quality 3D reconstruction of large-scale indoor scene is the key to combine Simultaneous Localization And Mapping (SLAM) with other applications, such as building inspection and construction monitoring. However, the requirement of global consistency brings challenges to both localization and mapping. In particular, significant localization and mapping error can happen when standard SLAM techniques are used when dealing with the area of featureless walls and roofs. This paper proposed a novel framework aiming to reconstruct a high-quality, globally consistent 3D model for indoor environments using only a RGB-D sensor. We first introduce the sparse and dense feature constraints in the local bundle adjustment. Then, the planar constraints are incorporated in the global bundle adjustment. We fuse the point clouds in a truncated signed distance function volume, from which the high quality mesh can be extracted. Our framework leads to a comprehensive 3D scanning solution for indoor scene, enabling high-quality results and potential applications in building information system. The video of 3D models reconstructed by the method proposed in this paper is available at <a href="https://youtu.be/DWMP4YfeNeY">https://youtu.be/DWMP4YfeNeY</a>.
first_indexed 2025-11-14T10:37:58Z
format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:37:58Z
publishDate 2018
publisher IEEE
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spelling curtin-20.500.11937-685632018-06-29T12:35:01Z High quality 3D reconstruction of indoor environments using RGB-D sensors Wang, J. Huang, S. Zhao, L. Ge, J. He, S. Zhang, C. Wang, Xiangyu © 2017 IEEE. High-quality 3D reconstruction of large-scale indoor scene is the key to combine Simultaneous Localization And Mapping (SLAM) with other applications, such as building inspection and construction monitoring. However, the requirement of global consistency brings challenges to both localization and mapping. In particular, significant localization and mapping error can happen when standard SLAM techniques are used when dealing with the area of featureless walls and roofs. This paper proposed a novel framework aiming to reconstruct a high-quality, globally consistent 3D model for indoor environments using only a RGB-D sensor. We first introduce the sparse and dense feature constraints in the local bundle adjustment. Then, the planar constraints are incorporated in the global bundle adjustment. We fuse the point clouds in a truncated signed distance function volume, from which the high quality mesh can be extracted. Our framework leads to a comprehensive 3D scanning solution for indoor scene, enabling high-quality results and potential applications in building information system. The video of 3D models reconstructed by the method proposed in this paper is available at <a href="https://youtu.be/DWMP4YfeNeY">https://youtu.be/DWMP4YfeNeY</a>. 2018 Conference Paper http://hdl.handle.net/20.500.11937/68563 10.1109/ICIEA.2017.8283120 IEEE restricted
spellingShingle Wang, J.
Huang, S.
Zhao, L.
Ge, J.
He, S.
Zhang, C.
Wang, Xiangyu
High quality 3D reconstruction of indoor environments using RGB-D sensors
title High quality 3D reconstruction of indoor environments using RGB-D sensors
title_full High quality 3D reconstruction of indoor environments using RGB-D sensors
title_fullStr High quality 3D reconstruction of indoor environments using RGB-D sensors
title_full_unstemmed High quality 3D reconstruction of indoor environments using RGB-D sensors
title_short High quality 3D reconstruction of indoor environments using RGB-D sensors
title_sort high quality 3d reconstruction of indoor environments using rgb-d sensors
url http://hdl.handle.net/20.500.11937/68563