کد مقاله g138
عنوان مقاله:
Multiobjective Optimal Location of FACTS Shunt-Series Controllers for Power System Operation Planning
در این پروژه سعی شده تا یک شبکه 14 شینه IEEE با افزودن تعداد سه عدد از ادوات FACTs به سیستم در حالت ماندگار شبیه سازی شود. ادوات به کار رفته عبارتند از HFC بین شین 2 و 4، PST بین شین 2 و 5 و UPFC بین شین 6 و 13.
سال ارائه: 2012 نوع مقاله: IEEE گزارش فارسی: دارد
کلید واژه : Flexible ac transmission systems (FACTS), hybridflow controller (HFC), multiobjective, optimal location, optimal power flow (OPF), phase-shifting transformer (PST), unified power-flow controller (UPFC)., پروژه متلب , شبیه سازی با متلب ,
Abstract—This paper develops appropriate modelsofflexible
ac transmission systems (FACTS) shunt-series controllers for
multiobjective optimization and also presents a multiobjective
optimization methodology tofind the optimal location of FACTS
shunt-series controllers. The objective functions are the total
fuel cost, power losses, and system loadability with and without
minimum cost of FACTS installation. The -constraint approach
is implemented for the multiobjective mathematical program
ming (MMP) formulation, including the FACTS shunt-series
controllers (i.e., phase-shifting transformer (PST), hybrid flow
controller (HFC), and unified power-flow controller (UPFC)).
Simulation results are presented for the IEEE 14-bus system. The
optimization method is numerically solved using Matlab and gen
eral algebraic modeling system (GAMS) software environments.
The solution procedure uses nonlinear programming (NLP) and
mixed-integer nonlinear programming (MINLP) to solve the op
timal location and setting of FACTS incorporated in the optimal
power-flow problem considering these objective functions and
improving the power system operation. Furthermore, the results
demonstrate that the HFC is outperformed by PST and UPFC
from the analytical and technical point of views.
Index Terms—Flexible ac transmission systems (FACTS),
hybridflow controller (HFC), multiobjective, optimal location,
optimal power flow (OPF), phase-shifting transformer (PST),
unified power-flow controller (UPFC).
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