Turkish Journal of Electrical Engineering and Computer Sciences
DOI
10.3906/elk-1507-195
Abstract
The design problem of a static output feedback controller and multivariable proportional-integral-derivative (PID) controller is investigated for linear time-invariant systems (LTI). First, the static output feedback stabilization problem is taken into consideration and then an iterative linear matrix inequality (ILMI) algorithm is developed for the synthesis of the controller. Second, choosing a multivariable PID control law, the whole system is transformed into a new augmented system represented in the form of a static output feedback control system. This method allows us to convert the multivariable PID controller design problem into a static output feedback synthesis problem. Thus, the proposed ILMI algorithm can as well be utilized for the design of the multivariable PID controller. Two numerical examples are presented to illustrate a practical application of the developed methodologies.
Keywords
Linear systems, static output feedback, descriptor approach, multivariable PID controller, linear matrix inequalities
First Page
1563
Last Page
1573
Recommended Citation
PARLAKÇI, MEHMET NUR ALPASLAN and CAFEROV, ELBRUS
(2017)
"New static output feedback stabilization and multivariable PID-controller design methods for unstable linear systems via an ILMI optimization approach,"
Turkish Journal of Electrical Engineering and Computer Sciences: Vol. 25:
No.
2, Article 73.
https://doi.org/10.3906/elk-1507-195
Available at:
https://journals.tubitak.gov.tr/elektrik/vol25/iss2/73
Included in
Computer Engineering Commons, Computer Sciences Commons, Electrical and Computer Engineering Commons