WSEAS Transactions on Applied and Theoretical Mechanics
Print ISSN: 1991-8747, E-ISSN: 2224-3429
Volume 15, 2020
Trajectory Planning of a CableBased Parallel Robot using Reinforcement Learning and Soft Actor-Critic
Authors: ,
Abstract: Industry 4.0 introduces the use of modular stations and better communication between agents to improve manufacturing efficiency and to lower the downtime between the customer and its final product. Among novel mechanisms that have a high potential in this new industrial paradigm are cablesuspended parallel robot (CSPR): their payloadtomass ratio is high compared to their serial robot counterpart and their setup is quick compared to other types of parallel robots such as Gantry system, popular in the automotive industry but difficult to set up and to adapt while the production line changes. A CSPR can cover the workspace of a manufacturing hall and providing assistance to operators before they arrive at their workstation. One challenge is to generate the desired trajectories, so that the CSPR could move to the desired area. Reinforcement Learning (RL) is a branch of Artificial Intelligence where the agent interacts with an environment to maximize a reward function. This paper proposes the use of a RL algorithm called Soft ActorCritic (SAC) to train a two degreesoffreedom (DOFs) CSPR to perform pickandplace trajectory. Even though the pickandplace trajectory based on artificial intelligence has been an active research with serial robots, this technique has yet to be applied to parallel robots.
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Pages: 165-172
DOI: 10.37394/232011.2020.15.19