Title :
A solvability condition for reactive power flow
Author :
John W. Simpson-Porco;Florian Dörfler;Francesco Bullo
Author_Institution :
Department of Mechanical Engineering and the Center for Control, Dynamical Systems and Computation, University of California Santa Barbara, United States
Abstract :
A central question in the analysis and operation of power networks is the feasibility of a unique high-voltage solution to the power flow equations satisfying operational constraints. For planning, monitoring, and contingency analysis in transmission networks, the high-voltage solution of these nonlinear equations can be constructed only numerically or roughly approximated using a linear DC power flow. In this work we analytically study the solvability of the nonlinear decoupled reactive power flow equations, and present a solvability condition relating the existence of a unique high-voltage solution to the spatial distribution of loading and the effective impedances between load buses. We validate the accuracy and applicability of our results through standard power network test cases.
Keywords :
"Reactive power","Mathematical model","Generators","Load modeling","Power system stability","Loading","Numerical stability"
Conference_Titel :
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
DOI :
10.1109/CDC.2015.7402502