Design and Development of a Climbing Robot for Wind Turbine Maintenance

Author:

Liu Jui-HungORCID,Padrigalan Kathleen

Abstract

The evolution of the wind turbine to generate carbon-free renewable energy is rapidly growing. Thus, performing maintenance and inspection tasks in high altitude environments or difficult to access places, and even bad weather conditions, poses a problem for the periodic inspection process of the wind turbine industry. This paper describes the design and development of a scaled-down prototype climbing robot for wind turbine maintenance to perform critical tower operations. Thus, the unique feature of this maintenance robot is the winding mechanism, which uses a tension force to grip on the tower surface without falling to the ground either in static or dynamic situations, with the locomotion to perform a straight up–down motion in a circular truncated cone and the stability to work at significant heights. The robot computer-aided design (CAD) model of the mechanical mechanism, force and structural analysis, and the testing of the prototype model, are addressed in this paper. The key hardware developments that were utilized to build a low-cost, reliable and compact climbing robot are the embedded microprocessors, brushed DC motors, stepper motors and steel rope. This paper concludes with a successful preliminary experiment of a scaled down prototype proving the functionality of the concept. The potential applications for this robot are industrial maintenance, inspection and exploration, security and surveillance, cleaning, painting, and welding at extreme height conditions.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference24 articles.

1. Cost Situation of Onshore Wind Energy in Germanyhttps://www.windguard.de/veroeffentlichungen.html

2. Omniclimbers: Omni-directional magnetic wheeled climbing robots for inspection of ferromagnetic structures;Tavakoli;Robot. Auton. Syst.,2013

3. Tele-operated propeller-type climbing robot for inspection of petrochemical vessels;Alkalla;Ind. Robot: Int. J.,2017

4. Sky Cleaner 3: A real pneumatic climbing robot for glass-wall cleaning;Zhang;IEEE Mag. Robot. Autom.,2006

5. Principle and experiment of vibrating suction method for wall-climbing robot;Wang;Vacuum,2010

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