A SAIWD-Based Approach for Simultaneous Reconfiguration and Optimal Siting and Sizing of Wind Turbines and DVR units in Distribution Systems
(ندگان)پدیدآور
Lashkar Ara, A.Bagheri Tolabi, H.hosseini, R.نوع مدرک
TextResearch paper
زبان مدرک
Englishچکیده
In this paper, a combination of simulated annealing (SA) and intelligent water drops (IWD) algorithm is used to solve the nonlinear/complex problem of simultaneous reconfiguration with optimal allocation (size and location) of wind turbine (WT) as a distributed generation (DG) and dynamic voltage restorer (DVR) as a distributed flexible AC transmission systems (DFACT) unit in a distribution system. The objectives of this research are to minimize active power loss, minimize operational cost, improve voltage stability, and increase the load balancing of the system. For evaluation purposes, the proposed algorithm is evaluated using the Tai-Power 11.4-kV real distribution network. The impacts of the optimal placement of the WT, DVR, and WT with DVR units are separately evaluated. The results are compared in terms of statistical indicators. By comparing all the testing scenarios, it is observed that the multi-objective optimization evolutionary algorithm is more beneficial than its single-objective optimization counterpart. Also, the obtained results show that the proposed SAIWD method outperforms the IWD method and other intelligent search algorithms such as genetic algorithm or particle swarm optimization.
کلید واژگان
distribution systemDynamic voltage restorer
Intelligent water drops
Reconfiguration
Simulated annealing
wind turbine
Distribution Systems
شماره نشریه
2تاریخ نشر
2016-12-011395-09-11
ناشر
University of Mohaghegh Ardabiliدانشگاه محقق اردبیلی
سازمان پدید آورنده
Department of Electrical Engineering, Dezful Branch, Islamic Azad University, Dezful, IranDepartment of Electrical Engineering, Khorramabad Branch, Islamic Azad University, Khorramabad, Iran
Department of Computer Engineering, Shahr-e-Qods Branch, Islamic Azad University, Tehran, Iran
شاپا
2322-45762423-4567




