Title :
Tuning of optimal and robust PID controller for open-loop unstable first-order plus time delay systems
Author_Institution :
Dept. of Electr. Eng., Tungnan Univ., China
Abstract :
This paper proposes a novel alternative method to tune an optimal and robust PID controller for open-loop unstable first-order plus time delay systems with gain margin (GM) and phase margin (PM) specifications. By exploiting the gain-phase margin tester method and the stability equation method, a gain and phase margin specifications-oriented region (GPMSOR), constituting all the feasible specifications-oriented robust PID controllers, is successfully located in the parameter plane. In addition, the integral of the absolute error (IAE) and the integral of the squared error (ISE) performance criterion of every representative point in the GPMSOR are computed. Accordingly, an optimal and robust PID controller set can be found inside the GPMSOR. Finally, an illustrative example cited from the literature is provided to show the effectiveness of the proposed method.
Keywords :
delay systems; open loop systems; optimal control; robust control; three-term control; GM specification; GPMSOR; IAE; ISE; PM specification; gain and phase margin specification-oriented region; gain-phase margin tester method; integral of the absolute error; integral of the squared error; open loop unstable first-order system; optimal controller tuning; parameter plane; performance criterion; robust PID controller tuning; stability equation method; time-delay system; Control systems; Delay effects; Equations; Process control; Robustness; Stability criteria; IAE; ISE; Stability equation; robust PID controller; time delay;
Conference_Titel :
Control Conference (CCC), 2012 31st Chinese
Conference_Location :
Hefei
Print_ISBN :
978-1-4673-2581-3