Title :
Mechatronic Systems Design for an Autonomous Robotic System for High-Efficiency Bridge Deck Inspection and Evaluation
Author :
La, Hung M. ; Lim, Ronny Salim ; Basily, Basily B. ; Gucunski, Nenad ; Jingang Yi ; Maher, Ahmed ; Romero, Francisco A. ; Parvardeh, Hooman
Author_Institution :
Center for Adv. Infrastruct. & Transp., Rutgers Univ., Piscataway, NJ, USA
Abstract :
The condition of bridges is critical for the safety of the traveling public. Bridges deteriorate with time as a result of material aging, excessive loading, environmental effects, and inadequate maintenance. The current practice of nondestructive evaluation (NDE) of bridge decks cannot meet the increasing demands for highly efficient, cost-effective, and safety-guaranteed inspection and evaluation. In this paper, a mechatronic systems design for an autonomous robotic system for highly efficient bridge deck inspection and evaluation is presented. An autonomous holonomic mobile robot is used as a platform to carry various NDE sensing systems for simultaneous and fast data collection. The robot´s NDE sensor suite includes ground penetrating radar arrays, acoustic/seismic arrays, electrical resistivity sensors, and video cameras. Besides the NDE sensors, the robot is also equipped with various onboard navigation sensors such as global positioning system (GPS), inertial measurement units (IMU), laser scanner, etc. An integration scheme is presented to fuse the measurements from the GPS, the IMU and the wheel encoders for high-accuracy robot localization. The performance of the robotic NDE system development is demonstrated through extensive testing experiments and field deployments.
Keywords :
Global Positioning System; bridges (structures); condition monitoring; design engineering; ground penetrating radar; inspection; maintenance engineering; mechatronics; mobile robots; path planning; robot vision; sensors; service robots; structural engineering; video cameras; video signal processing; GPS; Global Positioning System; IMU; NDE sensing systems; acoustic arrays; autonomous holonomic mobile robot; autonomous robotic system; bridge deck evaluation; bridges condition; bridges deterioration; electrical resistivity sensors; environmental effects; excessive loading; ground penetrating radar arrays; high-accuracy robot localization; high-efficiency bridge deck inspection; inertial measurement units; laser scanner; maintenance; material aging; mechatronic systems design; nondestructive evaluation; onboard navigation sensors; robot NDE sensor; robotic NDE system development; seismic arrays; traveling public safety; video cameras; wheel encoders; Bridges; Electric resistance; Global Positioning System; Ground penetrating radar; Inspection; Mobile robots; Nondestructive testing; Robot sensing systems; Sensor fusion; Bridge deck evaluation; civil infrastructure; mobile robot; nondestructive evaluation (NDE); sensor fusion;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2013.2279751