Title :
Efficient sequential non-linear optimal power flow approach using incremental variables
Author :
Mohapatra, Arupa ; Bijwe, P.R. ; Panigrahi, B.K.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Delhi, New Delhi, India
Abstract :
Linear programming (LP) techniques and interior point methods (IPMs) have been used extensively for optimal power flow´s solution. Both have their merits as well as limitations. There are situations in which a technique which combines the merits of both, is desirable. This study attempts to develop this technique using the well-known compact model, with hitherto unused non-linear approximation, in terms of incremental variables. Sequential applications of this non-linear incremental model, which is solved by using any of the IPM variants, leads to solution of the original problem. It avoids the vexed step-size restrictions, so common in sequential LP techniques. This model also allows for speed-accuracy trade-off. Results for few IEEE test systems and a fictitious 1000 bus system, have been obtained to explore the potential of this technique.
Keywords :
linear programming; load flow; 1000 bus system; IEEE test systems; IPM variants; LP techniques; compact model; hitherto unused nonlinear approximation; incremental variables; interior point methods; linear programming techniques; sequential nonlinear optimal power flow approach; speed-accuracy trade-off; vexed step-size restrictions avoidance;
Journal_Title :
Generation, Transmission & Distribution, IET
DOI :
10.1049/iet-gtd.2012.0750