We propose a branch flow model for the analysis and optimization of mesh as well as radial networks. The model leads to a new approach to solving optimal power flow (OPF) problems that consists of two relaxation steps. The first step eliminates the voltage and current angles and the second step approximates the resulting problem by a conic program that can be solved efficiently. For radial networks, we prove that both relaxation steps are always exact, provided there are no upper bounds on loads. For mesh networks, the conic relaxation is always exact and we characterize when the angle relaxation may fail. We propose a simple method to convexify a mesh network using phase shifters so that both relaxation steps are always exact and OPF for t...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines power generation/demand that minimize a certain obje...
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the anal-ysis and optimization of mesh as well as radial networks...
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
The optimal power flow (OPF) problem is nonconvex and generally hard to solve, see e.g. [1], [2]. In...
The optimal power flow (OPF) problem is generally nonconvex. Recently a second-order cone relaxation...
Power flow optimization is generally nonlinear and non-convex, and a second-order cone relaxation ha...
Power flow optimization is generally nonlinear and non-convex, and a second-order cone relaxation ha...
Several convex relaxations of the optimal power flow (OPF) problem have recently been developed usin...
Abstract—The optimal power flow (OPF) problem determines a network operating point that minimizes a ...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines power generation/demand that minimize a certain obje...
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the anal-ysis and optimization of mesh as well as radial networks...
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
We propose a branch flow model for the analysis and optimization of mesh as well as radial networks....
The optimal power flow (OPF) problem is nonconvex and generally hard to solve, see e.g. [1], [2]. In...
The optimal power flow (OPF) problem is generally nonconvex. Recently a second-order cone relaxation...
Power flow optimization is generally nonlinear and non-convex, and a second-order cone relaxation ha...
Power flow optimization is generally nonlinear and non-convex, and a second-order cone relaxation ha...
Several convex relaxations of the optimal power flow (OPF) problem have recently been developed usin...
Abstract—The optimal power flow (OPF) problem determines a network operating point that minimizes a ...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines a network operating point that minimizes a certain o...
The optimal power flow (OPF) problem determines power generation/demand that minimize a certain obje...