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A binary integer linear programming model for fault section estimation in electric power systems
(2019-11-01)
A new method, based on binary integer programming, to solve the problem of fault section estimation in power systems is developed in this work. This optimization model is formulated based on a set of minimum covers, subject ...
A Binary Integer Linear Programming Model for Fault Section Estimation in Electric Power Systems
(Ieee, 2019-01-01)
A new method, based on binary integer programming, to solve the problem of fault section estimation in power systems is developed in this work. This optimization model is formulated based on a set of minimum covers, subject ...
A new solution to the optimal power flow problem
(2001-12-01)
A new approach to solving the Optimal Power Flow problem is described, making use of some recent findings, especially in the area of primal-dual methods for complex programming. In this approach, equality constraints are ...
On The Robustness Of Optimal Regulators For Nonlinear Discrete-time Systems.
(IEEE, New York, NY, USA, 1986)
Modified barrier method for optimal power flow problem
(2004-12-01)
In this paper is presented a new approach for optimal power flow problem. This approach is based on the modified barrier function and the primal-dual logarithmic barrier method. A Lagrangian function is associated with the ...
Optimal Reactive Power Planning Using Two-Stage Stochastic Chance-Constrained Programming
(Ieee, 2013-01-01)
In this paper, the optimal reactive power planning considering uncertainty is presented. The classical deterministic mixed-integer nonlinear model is expanded into two-stage stochastic model with chance-constraint. This ...
Optimal reactive power planning using two-stage stochastic chance-constrained programming
(2013-12-27)
In this paper, the optimal reactive power planning considering uncertainty is presented. The classical deterministic mixed-integer nonlinear model is expanded into two-stage stochastic model with chance-constraint. This ...
Optimal Contract Pricing of Distributed Generation Under a Competitive Framework
(Ieee, 2010-01-01)
A bilevel programming approach for the optimal contract pricing of distributed generation (DG) in distribution networks is presented. The outer optimization problem corresponds to the owner of the DG who must decide the ...
Environmentally Committed Short-Term Planning of Electrical Distribution Systems Considering Renewable Based DG Siting and Sizing
(Ieee, 2017-01-01)
This paper proposes an environmentally committed mixed-integer linear programming (MILP) model to find the best plan for the electrical distribution systems (EDSs) in a short-term planning horizon. In this regard, the ...