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Robust Formation Control of Robot Manipulators With Interagent Constraints Over Undirected Signed Networks

Pelin Şekercioğlu, Bayu Jayawardhana, Ioannis Sarras, Antonio Lorı́a, Julien Marzat

Year
2024
Citations
7

Abstract

In this article, we address the problem of distributed control of a network of cooperative and competitive robot manipulators in end-effector coordinates. We propose a distributed bipartite formation controller that guarantees collision avoidance of the end-effectors. In the considered setting, two groups are formed and reach intergroup bipartite consensus or disagreement. On the other hand, the end-effectors achieve intragroup formation. To ensure that the end-effectors do not collide, we design gradient-based control laws using barrier-Lyapunov functions. In addition, the proposed controller ensures that the closed-loop system is robust to external disturbances. The latter are assumed to be generated by an exosystem, so they are effectively rejected by an internal-model-based compensator. More precisely, we establish the asymptotic stability of the bipartite formation manifold. Finally, we illustrate our theoretical results via numerical simulations.

Keywords

Robot manipulatorRobotComputer scienceRobust controlControl (management)Control theory (sociology)Robot kinematicsGrippersControl systemControl engineering

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