DocumentCode :
3693095
Title :
Stability and control of power systems using vector Lyapunov functions and sum-of-squares methods
Author :
Soumya Kundu;Marian Anghel
Author_Institution :
Center for Nonlinear Studies and Information Sciences Group (CCS-3), Los Alamos National Laboratory, USA
fYear :
2015
fDate :
7/1/2015 12:00:00 AM
Firstpage :
253
Lastpage :
259
Abstract :
Recently, sum-of-squares (SOS) based methods have been used for the stability analysis and control synthesis of polynomial dynamical systems. This analysis framework was also extended to non-polynomial dynamical systems, including power systems, using an algebraic reformulation technique that recasts the system´s dynamics into a set of polynomial differential algebraic equations. Nevertheless, for large scale dynamical systems this method becomes inapplicable due to its computational complexity. For this reason we develop a subsystem based stability analysis approach using vector Lyapunov functions and introduce a parallel and scalable algorithm to infer the stability of the interconnected system with the help of the subsystem Lyapunov functions. Furthermore, we design adaptive and distributed control laws that guarantee asymptotic stability under a given external disturbance. Finally, we apply this algorithm for the stability analysis and control synthesis of a network preserving power system.
Keywords :
"Lyapunov methods","Asymptotic stability","Power system stability","Polynomials","Stability analysis","Interconnected systems","Algorithm design and analysis"
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 2015 European
Type :
conf
DOI :
10.1109/ECC.2015.7330553
Filename :
7330553
Link To Document :
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