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Solving nonlinear kinematics of a rail-guided inspection robot used for planning visual scans of reactor vessel internals (CROSBI ID 708812)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Vasiljević, Goran ; Kovačić, Zdenko ; Postružin, Željko Solving nonlinear kinematics of a rail-guided inspection robot used for planning visual scans of reactor vessel internals // Proceedings of the 29th Mediterranean Conference on Control and Automation MED 2021. 2021. str. 596-603 doi: 10.1109/MED51440.2021.9480316

Podaci o odgovornosti

Vasiljević, Goran ; Kovačić, Zdenko ; Postružin, Željko

engleski

Solving nonlinear kinematics of a rail-guided inspection robot used for planning visual scans of reactor vessel internals

In this paper we present a robot for non- destructive visual scanning of an outside shell of the reactor vessel internals. The robot has a total of four degrees of freedom where one of the joints has nonlinear kinematics characteristics due to the construction of the rail-guided joint structure. The problem of solving the nonlinear kinematics of the robot has been addressed by taking the environmental and geometry constraints into account. Kinematics is used to calculate the scan path to cover a specified part of the reactor vessel internals. The described method has been implemented in an user-oriented visualization and control software tool called Fiona, which was tested on a real robot. We demonstrate the effectiveness of the presented method using Fiona in a simulated reactor vessel internals inspection environment.

reactor vessel internals, inspection robot, nonlinear kinematics

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Podaci o prilogu

596-603.

2021.

objavljeno

10.1109/MED51440.2021.9480316

Podaci o matičnoj publikaciji

Proceedings of the 29th Mediterranean Conference on Control and Automation MED 2021

Podaci o skupu

29th Mediterranean Conference on Control and Automation (MED 2021)

predavanje

22.06.2021-25.06.2021

Apulija, Italija

Povezanost rada

Elektrotehnika, Temeljne tehničke znanosti

Poveznice