Title :
Active control of combustion oscillations based on Desired Dynamic Equation
Author :
Hu, Yichao ; Li, Donghai ; Zhu, Min ; Gu, Tao
Author_Institution :
Dept. of Thermal Eng., Tsinghua Univ., Beijing, China
Abstract :
Combustion oscillations have become a major issue for propulsion systems and combustion chambers since it can cause structural damages. Active control provides a way of extending the systems´ stable operating range and numerous efforts have been made by engineers and researchers. In this paper, increment type PID controller with real differentiation based on Desired Dynamical Equation (DDE-PID) is applied in the control of combustion oscillations in Rijke tube when exist no disturbance, sinusoidal disturbances and white noise disturbances. Meanwhile, orthogonal experimental design is used to investigate effects of the DDE´s parameters and real differentiation. The experimental results show that DDE-PID is easy to tune and can suppress combustion oscillations effectively. Furthermore, simple structure, good performance robustness, and independent on the model of processes make DDE-PID more suitable for practical applications in suppressing combustion oscillations.
Keywords :
combustion; design of experiments; differentiation; heat engines; oscillations; stability; three-term control; white noise; Rijke tube; active control; combustion chamber; combustion oscillation; desired dynamical equation; increment type PID controller; orthogonal experimental design; oscillation suppression; propulsion system; real differentiation; sinusoidal disturbance; stable operating range; structural damage; white noise disturbance; Combustion; Control systems; Electron tubes; Mathematical model; Oscillators; Tuning; White noise; Desired Dynamical Equation; Rijke tube; combustion oscillation;
Conference_Titel :
Control Automation and Systems (ICCAS), 2010 International Conference on
Conference_Location :
Gyeonggi-do
Print_ISBN :
978-1-4244-7453-0
Electronic_ISBN :
978-89-93215-02-1