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Mobile structural health monitoring based on legged robots

Citation Link: https://doi.org/10.15480/882.8859
Publikationstyp
Journal Article
Date Issued
2023-09-15
Sprache
English
Author(s)
Smarsly, Kay  
Digitales und autonomes Bauen B-1  
Dragos, Kosmas  
Digitales und autonomes Bauen B-1  
Stührenberg, Jan  
Digitales und autonomes Bauen B-1  
Worm, Mathias 
Digitales und autonomes Bauen B-1  
TORE-DOI
10.15480/882.8859
TORE-URI
https://hdl.handle.net/11420/44310
Journal
Infrastructures  
Volume
8
Issue
9
Article Number
136
Citation
Infrastructures 8 (9): 136 (2023-09-15)
Publisher DOI
10.3390/infrastructures8090136
Scopus ID
2-s2.0-85172932107
Publisher
MDPI
With the advancements in information, communication, and sensing technologies, structural health monitoring (SHM) has matured into a substantial pillar of infrastructure maintenance. In particular, wireless sensor networks have gradually been incorporated into SHM, leveraging new opportunities towards reduced installation efforts and enhanced flexibility and scalability, as compared to cable-based SHM systems. However, wireless sensor nodes are installed at fixed locations and need to be employed at high density to reliably monitor large infrastructure, which may cause high installation costs. Furthermore, the limited power autonomy of wireless sensor networks, installed at fixed locations for unattended long-term operation, still represents a significant constraint when deploying stationary wireless sensor nodes for SHM. To resolve the critical constraints stemming from costly high-density deployment and limited power autonomy, a mobile structural health monitoring concept based on legged robots is proposed in the study reported in this paper. The study explores the accuracy and cost-efficiency of deploying legged robots in dense measurement setups for wireless SHM of civil infrastructure, aiming to gain insights into the advantages of mobile wireless sensor nodes in general and of legged robots in particular, in terms of obtaining rich information on the structural condition. As is shown in this paper, the legged robots, as compared to stationary wireless sensor nodes, require a smaller number of nodes to be deployed in civil infrastructure to achieve rich sensor information, entailing more cost-efficient, yet accurate, SHM. In conclusion, this study represents a first step towards autonomous robotic fleets advancing structural health monitoring.
Subjects
infrastructure maintenance
legged robots
mobile SHM
quadruped robots
structural health monitoring (SHM)
wireless sensor networks
DDC Class
620: Engineering
Publication version
publishedVersion
Lizenz
https://creativecommons.org/licenses/by/4.0/
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