Title :
Power system transient stability design using reachability based stability-region computation
Author :
Jin, Licheng ; Liu, Haifeng ; Kumar, Ratnesh ; Mc Calley, J.D. ; Elia, Nicola ; Ajjarapu, Venkataramana
Author_Institution :
Iowa State Univ., Ames, IA, USA
Abstract :
This paper presents a reachability based method to compute the stability region of a stable equilibrium point and uses it to design controls for transient stability of power systems. First, a Hamilton-Jacobi-Isaacs (HJI) partial differential equation (PDF) is obtained for the propagation of the backward reachability set of a nonlinear system. This computation when used to obtain the backward reachable set of a stable equilibrium point yields its stability region. Using the stability regions of various discrete controls (also called modes) transient stability design is performed. For example the effectiveness of a control can be verified by checking whether a post-fault initial state is in the stability region of the system with that control switched on. We illustrate our method by applying it to a single-machine infinite-bus system equipped with series and shunt capacitive compensation.
Keywords :
control system synthesis; discrete systems; nonlinear control systems; partial differential equations; power system control; power system transient stability; reachability analysis; Hamilton-Jacobi-Isaacs partial differential equation; nonlinear system; post-fault initial state; power system transient stability control design; reachability based method; shunt capacitive compensation; single-machine infinite-bus system; stability-region computation; Circuit faults; Circuit stability; Control systems; Level set; Nonlinear systems; Partial differential equations; Power system security; Power system simulation; Power system stability; Power system transients;
Conference_Titel :
Power Symposium, 2005. Proceedings of the 37th Annual North American
Print_ISBN :
0-7803-9255-8
DOI :
10.1109/NAPS.2005.1560550