Title :
Second-Order Cone Programming for Optimal Power Flow in VSC-Type AC-DC Grids
Author :
Baradar, Mohamadreza ; Hesamzadeh, M.R. ; Ghandhari, M.
Author_Institution :
Dept. of Electr. Power Syst., KTH R. Inst. of Technol., Stockholm, Sweden
Abstract :
This paper presents a second order cone programming (SOCP) formulation of the optimal power flow problem for AC-DC systems with voltage source converter (VSC) technology. Approximation techniques have been used to derive the SOCP formulation of the AC-DC OPF problem. Later, the SOCP formulation can be solved using the interior point method (IPM) by considering the limits on AC-DC grid. The accuracy of SOCP formulation of AC OPF has been proven with numerical examples using IEEE 14-bus, IEEE 30-bus, and IEEE 57-bus example systems. The results of the SOCP formulation are compared with available commercial software. Then a DC system with VSC technology is modeled in the IEEE 30-bus example system. The SOCP formulation of AC-DC OPF is applied to the modified IEEE 30-bus example system and the results are discussed. The limitations of derived SOCP formulation are also discussed.
Keywords :
AC-DC power convertors; IEEE standards; convex programming; load flow; power grids; AC-DC OPF; AC-DC grid; AC-DC systems; IEEE 14-bus; IEEE 30-bus; IEEE 57-bus; SOCP formulation; VSC technology; VSC-type ac-dc grids; approximation techniques; interior point method; optimal power flow problem; second-order cone programming; voltage source converter; Equations; Mathematical model; Power conversion; Programming; Reactive power; Vectors; AC-DC optimal power flow; multi-terminal HVDC systems; second-order cone programming;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2013.2271871