Home /Research /Movement Optimization of Robotic Arms for Energy and Time Reduction using Evolutionary Algorithms
SWARM

Movement Optimization of Robotic Arms for Energy and Time Reduction using Evolutionary Algorithms

Abolfazl Akbari, Saeed Mozaffari, Rajmeet Singh, Majid Ahmadi, Shahpour Alirezaee

Year
2023
Citations
4

Abstract

Trajectory optimization of a robot manipulator consists of both optimization of the robot movement as well as optimization of the robot end-effector path. This paper aims to find optimum movement parameters including movement type, speed, and acceleration to minimize robot energy. Trajectory optimization by minimizing the energy would increase longevity of robotic manipulators. We utilized particle swarm optimization method to find the movement parameters leading to minimum energy consumption. The effectiveness of the proposed method is demonstrated on different trajectories. Experimental results show that 49% efficiency was obtained using a UR5 robotic arm.

Keywords

Particle swarm optimizationTrajectoryRobotAccelerationComputer scienceRobot end effectorReduction (mathematics)Movement (music)Control theory (sociology)Multi-swarm optimization

Related papers

Browse all SWARM papers