2019Unpublished venueRequires access

Research on Fuzzy PID Control Strategy of Hydraulic Parallel Six Degrees of Freedom Platform

Lijuan Wang, Junxia Li, Ning Chen

Open publisher page 2 citations

Abstract

Due to the nonlinear, strong coupling and hysteresis characteristics of the hydraulic parallel six-degree-of-freedom platform, the control strategy based on the traditional PID cannot get satisfactory control quality, and the fuzzy control alone makes the system control too rough. Therefore, this paper proposes to use the fuzzy control theory to adjust the PID control parameters online, so as to realize the parameter adaptive PID control strategy of the parallel six-degree-of-freedom platform, and build the model in MATLAB to simulate the system performance. The simulation results show that the system response of the six-degree-of-freedom platform under the fuzzy PID control strategy reduces the system overshoot compared with the traditional PID control strategy, accelerates the response time of the system, and improves the steady-state accuracy and dynamic characteristics of the system. It is of certain guiding significance to improve the control performance of the hydraulic parallel six-degree-of-freedom platform.

About this research paper

What this paper is about

Due to the nonlinear, strong coupling and hysteresis characteristics of the hydraulic parallel six-degree-of-freedom platform, the control strategy based on the traditional PID cannot get satisfactory control quality, and the fuzzy control alone makes the system control too rough. Therefore, this paper proposes to use the fuzzy control theory to adjust the PID control parameters online, so as to realize the parameter adaptive PID control strategy of the parallel six-degree-of-freedom platform, and build the model in MATLAB to simulate the system performance. The simulation results show that the system response of the six-degree-of-freedom platform under the fuzzy PID control strategy reduces the system overshoot compared with the traditional PID control strategy, accelerates the response time of the system, and improves the steady-state accuracy and dynamic characteristics of the system. It is of certain guiding significance to improve the control performance of the hydraulic parallel six-degree-of-freedom platform.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Due to the nonlinear, strong coupling and hysteresis characteristics of the hydraulic parallel six-degree-of-freedom platform, the control strategy based on the traditional PID cannot get satisfactory control quality, and the fuzzy control alone makes the system control too rough. Therefore, this paper proposes to use the fuzzy control theory to adjust the PID control parameters online, so as to realize the parameter adaptive PID control strategy of the parallel six-degree-of-freedom platform, and build the model in MATLAB to simulate the system performance. The simulation results show that the system response of the six-degree-of-freedom platform under the fuzzy PID control strategy reduces the system overshoot compared with the traditional PID control strategy, accelerates the response time of the system, and improves the steady-state accuracy and dynamic characteristics of the system. It is of certain guiding significance to improve the control performance of the hydraulic parallel six-degree-of-freedom platform.

Key concepts: Overshoot (microwave communication), PID controller, Control theory (sociology), Control engineering, Fuzzy control system, Control system, MATLAB, Computer science

Related papers

Back to paper searchBrowse research topicsOriginal source
Research on Fuzzy PID Control Strategy of Hydraulic Parallel Six Degrees of Freedom Platform — Research Paper | ScholarLens