首页 /研究 /SMCSPO-Based Robust Control of AUV in Underwater Environments including Disturbances
OTHER

SMCSPO-Based Robust Control of AUV in Underwater Environments including Disturbances

Hyun-Hee Kim, Min Cheol Lee, Hyeon-Jin Cho, Jun-Ho Hwang, Jong‐Seob Won

发表年份
2021
引用次数
10
访问权限
开放获取

摘要

In the underwater environment, robust control algorithms are required to control autonomous underwater vehicles (AUVs) at high speed while preventing large nonlinearities and disturbances. Sliding mode control (SMC) is a well-known robust control theory and has been widely used not only in AUV control but also in systems such as industrial robots which have high nonlinearity in their system dynamics. However, SMC has the disadvantage of causing chattering on the control input, and it is difficult to apply this method to the control fins of an AUV system that cannot move its fins at high speed underwater. In this work, a design for a sliding mode control with sliding perturbation observer (SMCSPO) algorithm is applied to AUVs, and the simulation results under underwater disturbance conditions are discussed. From simulation using MATLAB, it is confirmed that AUV control using SMCSPO shows better trajectory tracking control performance without chattering than PID control.

关键词

Control theory (sociology)UnderwaterSliding mode controlPID controllerControl engineeringRobust controlNonlinear systemControl systemEngineeringComputer science

相关论文

查看 OTHER 分类全部论文