Title :
Optimal Control and Electro-control System Design of A New Style Aircraft Arresting Device
Author :
Song, Jinchun ; Zhao, Lili ; Liu, Hongyi
Author_Institution :
Inst. of Mech. Eng. & Autom., Northeastern Univ., Shenyang
Abstract :
The principle of new style electro-hydraulic controlled aircraft arresting system that leads in electrical signal is introduced. It is convenient to construct automatic control system by computer. Dynamic analysis was done for actuating mechanism, the method of linearization and MATLAB function was applied and mathematical model of the system was built. Based on the system model, optimal PID controller was designed. When simulating, the graphical user interfaces was easy to manipulate and satisfied function request. Simulation result shows that optimal PID controller applied in new style electro-hydraulic controlled aircraft arresting system obtains good controlling effectiveness. After simulating analysis, the hardware of the electro-control system including interface circuit of power supply part, count part, amplification part and communication part was designed. Test results indicate that electro-control system can control behaviors of electro-hydraulic valve according to inputting signals
Keywords :
aircraft control; control system synthesis; electric actuators; hydraulic actuators; industrial control; mathematics computing; optimal control; three-term control; MATLAB function; actuating mechanism; amplification part; automatic control system; communication part; count part; dynamic analysis; electrical signal; electro-control system design; electro-hydraulic valve; graphical user interfaces; interface circuit; linearization method; mathematical model; new style electro-hydraulic controlled aircraft arresting system; optimal PID controller; optimal control; power supply part; simulation analysis; Aerospace control; Aircraft manufacture; Automatic control; Circuit simulation; Communication system control; Computational modeling; Control systems; Mathematical model; Optimal control; Three-term control; aircraft arresting; electro-control system; mathematical model; optimal PID controller;
Conference_Titel :
Intelligent Control and Automation, 2006. WCICA 2006. The Sixth World Congress on
Conference_Location :
Dalian
Print_ISBN :
1-4244-0332-4
DOI :
10.1109/WCICA.2006.1714352