Output Control Algorithms of Dynamic Positioning and Disturbance Rejection for Robotic Vessel∗∗This paper is supported by Government of Russian Federation (GOSZADANIE 2014/190 (project 2118), grant 074-U01) and the Ministry of Education and Science of Russian Federation (project 14.Z50.31.0031). This work is financially supported by Nature Science Foundation of Zhejiang Province (China) under Grant LQ13F030014.
Jian Wang, Anton A. Pyrkin, Alexey Bobtsov, Oleg I. Borisov, Vladislav S. Gromov, Sergey A. Kolyubin, Sergey M. Vlasov
- Year
- 2015
- Citations
- 13
Abstract
In this paper two control problems for a surface robotic vessel are addressed. One is design of a dynamic positioning (DP) system. The other deals with advanced dynamic positioning (ADP) which is extended by an unknown disturbance rejection. Considered plant is represented as a MIMO system which comprised of three independent SISO channels. For the DP problem all SISO channels are controlled by virtual control inputs generated using a robust approach, so called, "consecutive compensator". Then after an inverse MIMO transformation real control signals are calculated for robotic actuators. For the APD problem we design the cancellation scheme for channels with input delays that may be caused by a command transmission via the radio channel or computational complexity of the image processing. To finalize the investigation proposed DP algorithm is applied to the robotic complex of vessel motion modeling.
Keywords
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