Robotic System for Inspection by Contact of Bridge Beams Using UAVs †
暂无分享,去创建一个
Aníbal Ollero | Pablo Ramon Soria | Begoña C. Arrue | Guillermo Heredia | Pedro J. Sanchez-Cuevas | A. Ollero | G. Heredia | B. Arrue | P. R. Soria | P. Sánchez-Cuevas
[1] G. Heredia,et al. Aerial manipulator with a compliant arm for bridge inspection , 2017, 2017 International Conference on Unmanned Aircraft Systems (ICUAS).
[2] Hong Guan,et al. Towards UAV-based bridge inspection systems: a review and an application perspective , 2015 .
[3] Aníbal Ollero,et al. Control of a multirotor outdoor aerial manipulator , 2014, 2014 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[4] James S. Hayden,et al. The Effect Of The Ground On Helicopter Hovering Power Required , 1976 .
[5] Fulvio Mancarella,et al. Micro-Opto-Mechanical sensors for tactile width measurements of surface opening cracks in concrete , 2017, 2017 IEEE SENSORS.
[6] V. J. Rossow. Effect of ground and/or ceiling planes on thrust of rotors in hover , 1985 .
[7] Nikos Komodakis,et al. Autonomous robotic system for tunnel structural inspection and assessment , 2018, International Journal of Intelligent Robotics and Applications.
[8] Konstantin Kondak,et al. Unmanned Aerial Systems Physically Interacting with the Environment. Load Transportation, Deployment and Aerial Manipulation , 2013 .
[9] Anibal Ollero,et al. Characterization of the Aerodynamic Ground Effect and Its Influence in Multirotor Control , 2017 .
[10] Pierre Michaud,et al. A semi-autonomous mobile robot for bridge inspection , 2018, Automation in Construction.
[11] Stathis C. Stiros,et al. Measuring Deflections of a Short-Span Railway Bridge Using a Robotic Total Station , 2013 .
[12] Junwon Seo,et al. Drone-enabled bridge inspection methodology and application , 2018, Automation in Construction.
[13] Weihua Sheng,et al. A Robotic Crack Inspection and Mapping System for Bridge Deck Maintenance , 2014, IEEE Transactions on Automation Science and Engineering.
[14] Vijay Kumar,et al. Influence of Aerodynamics and Proximity Effects in Quadrotor Flight , 2012, ISER.
[15] Pedro Arias-Sánchez,et al. Assessment of cracks on concrete bridges using image processing supported by laser scanning survey , 2017 .
[16] Lorenzo Marconi,et al. Developing an Aerial Manipulator Prototype: Physical Interaction with the Environment , 2014, IEEE Robotics & Automation Magazine.
[17] G. Heredia,et al. Multirotor UAS for bridge inspection by contact using the ceiling effect , 2017, 2017 International Conference on Unmanned Aircraft Systems (ICUAS).
[18] Hung Manh La,et al. Data analysis and visualization for the bridge deck inspection and evaluation robotic system , 2015 .
[19] José Ruíz Ascencio,et al. Visual simultaneous localization and mapping: a survey , 2012, Artificial Intelligence Review.
[20] J. Braga,et al. Aerial manipulator for structure inspection by contact from the underside , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[21] Yu Gu,et al. A survey of optical flow techniques for UAV navigation applications , 2013, 2013 International Conference on Unmanned Aircraft Systems (ICUAS).
[22] Jingang Yi,et al. Mechatronic Systems Design for an Autonomous Robotic System for High-Efficiency Bridge Deck Inspection and Evaluation , 2013, IEEE/ASME Transactions on Mechatronics.
[23] George J. Vachtsevanos,et al. Handbook of Unmanned Aerial Vehicles , 2014 .
[24] Suseong Kim,et al. Operating an unknown drawer using an aerial manipulator , 2015, 2015 IEEE International Conference on Robotics and Automation (ICRA).
[25] Matko Orsag,et al. Modeling and Control of MM-UAV: Mobile Manipulating Unmanned Aerial Vehicle , 2013, J. Intell. Robotic Syst..
[26] Nenad Gucunski,et al. Delamination and concrete quality assessment of concrete bridge decks using a fully autonomous RABIT platform , 2015 .
[27] Antonio Sgorbissa,et al. Post‐disaster assessment with unmanned aerial vehicles: A survey on practical implementations and research approaches , 2018, J. Field Robotics.
[28] Guillermo Heredia,et al. Experimental Approach to the Aerodynamic Effects Produced in Multirotors Flying Close to Obstacles , 2017, ROBOT.