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An LP-based optimal power flow for transmission losses and generator reactive margins minimization

E. Lobato, L. Rouco, M.I. Navarrete, R. Casanova, G. López

This paper describes a mixed-integer linear programming optimal power flow. The objective function consists of minmizing transmission losses and generator reactive outputs. The problem constraints are the power flow equations and the bounds of the power system variables (generator reactive outputs, bus voltages, transformer taps branch power flows). The proposed method is an iterative process that linearizes in each iteration both the objetive function and the constraints. In addition, the objective function is represented by a set of tangent cuts. The discrete nature of shunt reactors and capacitors is modeled by integer variables. The performance of the method is illustrated in an actual scenario of the Spanish power system.


Palabras clave: Optimal power flow, linear programming, reactive power dispatch

IEEE Power Tech. Conference, Oporto, Norte (Portugal). 10-13 Septiembre 2001

DOI: DOI icon 10.1109/PTC.2001.964894    

Fecha de publicación: septiembre 2001.



Cita:
E. Lobato, L. Rouco, M.I. Navarrete, R. Casanova, G. López, An LP-based optimal power flow for transmission losses and generator reactive margins minimization, IEEE Power Tech. Conference. ISBN: 0-7803-7139-9, Oporto, Portugal, 10-13 Septiembre 2001


    Líneas de investigación:

IIT-01-033A

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