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题名Development of low-cost mobile laser scanning for 3D construction indoor mapping by using inertial measurement unit, ultra-wide band and 2D laser scanner
作者
发表日期2019-08-02
发表期刊Engineering, Construction and Architectural Management
ISSN/eISSN0969-9988
卷号26期号:7页码:1367-1386
摘要

Purpose: The purpose of this paper is to introduce the development of an innovative mobile laser scanning (MLS) method for 3D indoor mapping. The generally accepted and used procedure for this type of mapping is usually performed using static terrestrial laser scanning (TLS) which is high-cost and time-consuming. Compared with conventional TLS, the developed method proposes a new idea with advantages of low-cost, high mobility and time saving on the implementation of a 3D indoor mapping. Design/methodology/approach: This method integrates a low-cost 2D laser scanner with two indoor positioning techniques – ultra-wide band (UWB) and an inertial measurement unit (IMU), to implement a 3D MLS for reality captures from an experimental indoor environment through developed programming algorithms. In addition, a reference experiment by using conventional TLS was also conducted under the same conditions for scan result comparison to validate the feasibility of the developed method. Findings: The findings include: preset UWB system integrated with a low-cost IMU can provide a reliable positioning method for indoor environment; scan results from a portable 2D laser scanner integrated with a motion trajectory from the IMU/UWB positioning approach is able to generate a 3D point cloud based in an indoor environment; and the limitations on hardware, accuracy, automation and the positioning approach are also summarized in this study. Research limitations/implications: As the main advantage of the developed method is low-cost, it may limit the automation of the method due to the consideration of the cost control. Robotic carriers and higher-performance 2D laser scanners can be applied to realize panoramic and higher-quality scan results for improvements of the method. Practical implications: Moreover, during the practical application, the UWB system can be disturbed by variances of the indoor environment, which can affect the positioning accuracy in practice. More advanced algorithms are also needed to optimize the automatic data processing for reducing errors caused by manual operations. Originality/value: The development of this MLS method provides a novel idea that integrates data from heterogeneous systems or sensors to realize a practical aim of indoor mapping, and meanwhile promote the current laser scanning technology to a lower-cost, more flexible, more portable and less time-consuming trend.

关键词Case study Construction
DOI10.1108/ECAM-06-2018-0242
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收录类别SCIE ; SSCI
语种英语English
WOS研究方向Engineering ; Business & Economics
WOS类目Engineering, Industrial ; Engineering, Civil ; Management
WOS记录号WOS:000479273500008
Scopus入藏号2-s2.0-85068037055
引用统计
被引频次:22[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://repository.uic.edu.cn/handle/39GCC9TT/11876
专题个人在本单位外知识产出
通讯作者Chen, Chao
作者单位
1.Department of Architecture and Built Environment,University of Nottingham,Ningbo,China
2.Faculty of Architecture,The University of Hong Kong,Hong Kong
3.Department of Civil Engineering,University of Nottingham,Ningbo,China
4.University of Nottingham,Ningbo,China
推荐引用方式
GB/T 7714
Chen, Chao,Tang, Llewellyn,Hancock, Craig Matthewet al. Development of low-cost mobile laser scanning for 3D construction indoor mapping by using inertial measurement unit, ultra-wide band and 2D laser scanner[J]. Engineering, Construction and Architectural Management, 2019, 26(7): 1367-1386.
APA Chen, Chao, Tang, Llewellyn, Hancock, Craig Matthew, & Zhang, Penghe. (2019). Development of low-cost mobile laser scanning for 3D construction indoor mapping by using inertial measurement unit, ultra-wide band and 2D laser scanner. Engineering, Construction and Architectural Management, 26(7), 1367-1386.
MLA Chen, Chao,et al."Development of low-cost mobile laser scanning for 3D construction indoor mapping by using inertial measurement unit, ultra-wide band and 2D laser scanner". Engineering, Construction and Architectural Management 26.7(2019): 1367-1386.
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