DocumentCode :
551256
Title :
Determination of all feasible robust pid controllers for open-loop unstable plus time delay systems with gain margin and phase margin specifications
Author :
Wang Yuan-Jay ; Shih Shang-Hong ; Lee Chi-Kuang ; Lai Yan-Chang ; Chou Chien-Min
Author_Institution :
Dept. of Electr. Eng., Tungnan Univ., Taipei, Taiwan
fYear :
2011
fDate :
22-24 July 2011
Firstpage :
2394
Lastpage :
2399
Abstract :
This paper proposes a novel graphical method to compute all feasible gain and phase margin specifications-oriented robust PID controllers to stabilize unstable plus time delay processes. A virtual gain-phase margin tester compensator is incorporated to guarantee the concerned system with certain robust safety margins. The stability equation method and the parameter plane method are exploited to portray stability boundary and constant gain margin boundary as well as constant phase margin boundary. All feasible robust stabilizing PI controllers for the considered unstable plus time delay processes are graphically determined in the parameter plane by taking the overlapped region of the plotted boundaries. Finally, an illustrative example with computer simulations is provided to demonstrate the effectiveness and confirm the validity of the proposed methodology. Based on the pre-specified gain and phase margin specifications, a non-conservative gain and phase margin specifications-oriented region can be graphically identified directly in the parameter plane for designing robust PI controllers.
Keywords :
PI control; compensation; control system synthesis; delay systems; open loop systems; robust control; computer simulations; constant gain margin boundary; constant phase margin boundary; feasible robust stabilizing PI controllers; gain margin specifications; graphical method; open-loop unstable plus time delay systems; parameter plane method; phase margin specifications; plotted boundary; robust PI controllers design; robust PID controllers; robust safety margins; stability boundary; stability equation method; unstable plus time delay processes; virtual gain-phase margin tester compensator; Control systems; Delay effects; Equations; Process control; Robustness; Stability analysis; Tuning; Gain Margin; Parameter Plane; Phase Margin; Robust Pi Controller; Stability Equation; Time Delay;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2011 30th Chinese
Conference_Location :
Yantai
ISSN :
1934-1768
Print_ISBN :
978-1-4577-0677-6
Electronic_ISBN :
1934-1768
Type :
conf
Filename :
6001601
Link To Document :
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