Title :
Main steam temperature control based on cascade correction and state feedback
Author :
Qin Li ; Hao Zhang ; Ping Yang ; Daogang Peng
Author_Institution :
CIMS Res. Center, Tongji Univ., Shanghai, China
Abstract :
According to the outlet temperature characteristics of supercritical boiler super-heater, a design method coordinated cascade correction and state feedback was proposed. Which solved the problems occurred during the state feedback controller design, such as the high-order system, zero-placement, stable state design and complicated computation, as well as decreased the overshoot and steady state error. State observation matrix, state feedback matrix, cascade controller and zero corrector were designed for the main steam temperature process. The simulation results showed that the cascade correction and state feedback coordinated system had no overshoot and the adjusting time was shorter and better robust compared with the PID control system, as well as with the better disturbance decrease compared with the single state feedback system, and feasibility for engineering compared with other intelligent optimization control strategies.
Keywords :
boilers; cascade control; control system synthesis; matrix algebra; pole assignment; state feedback; temperature control; three-term control; PID control system; cascade controller; cascade correction; design method coordinated cascade correction; high-order system; intelligent optimization control strategies; main steam temperature control; stable state design; state feedback controller design; state observation matrix; steady state error; steam temperature process; supercritical boiler superheater; zero corrector; zero-placement; Computer integrated manufacturing; Educational institutions; Intelligent control; Power systems; State feedback; Temperature control; main steam temperature; multiple capacity process; pole-placement; state feedback;
Conference_Titel :
Intelligent Control and Automation (WCICA), 2014 11th World Congress on
DOI :
10.1109/WCICA.2014.7052889