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LQR Control and Optimization for Trajectory Tracking of Biomimetic Robotic Fish Based on Unreal Engine

Ming Wang, Kunlun Wang, Qianchuan Zhao, Xuehan Zheng, He Gao, Junzhi Yu

Year
2023
Citations
11
Access
Open access

Abstract

A realistic and visible dynamic simulation platform can significantly facilitate research on underwater robots. This paper uses the Unreal Engine to generate a scene that resembles real ocean environments, before building a visual dynamic simulation platform in conjunction with the Air-Sim system. On this basis, the trajectory tracking of a biomimetic robotic fish is simulated and assessed. More specifically, we propose a particle swarm optimization algorithm-based control strategy to optimize the discrete linear quadratic regulator controller for the trajectory tracking problem, as well as tracking and controlling discrete trajectories with misaligned time series through introducing a dynamic time warping algorithm. Simulation analyses of the biomimetic robotic fish following a straight line, a circular curve without mutation, and a four-leaf clover curve with mutation are carried out. The obtained results verify the feasibility and effectiveness of the proposed control strategy.

Keywords

TrajectoryControl theory (sociology)Computer scienceParticle swarm optimizationController (irrigation)Tracking (education)Linear-quadratic regulatorTrajectory optimizationSimulationControl engineering

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