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Issue title: Electromagnetic Fields in Mechatronics, Computer Sciences, Electrical and Electronic Engineering
Guest editors: Sławomir Wiak, Paolo Di Barba and Evelina Mognaschi
Article type: Research Article
Authors: Malčeski, Stojana | Vuletić, Jovicab; | Todorovski, Mirkob | Angelov, Jordančob
Affiliations: [a] Power System Planning & Analysis, AD MEPSO, Macedonia Transmission System Operator, Skopje, Republic of Macedonia | [b] Faculty of Electrical Engineering and Information Technologies, Power Systems Department, Ss. Cyril and Methodius University, Skopje, Republic of Macedonia
Correspondence: [*] Corresponding author: Jovica Vuletić, Faculty of Electrical Engineering and Information Technologies, Power Systems Department, Saints Cyril and Methodius University, Skopje, Republic of Macedonia. E-mail: [email protected]
Abstract: Throughout the past few decades, the share of distributed generation in power systems has increased continuously. This increasing trend coupled with the continuous demand growth in the distribution systems started a shift towards heavier reactive power consumption. The latter paved the way for the development of advanced operational and planning algorithms for power distribution systems. Following these trends in the distribution systems, the distribution grids must be developed with greater reliability and flexibility, i.e. smart grids. Consequently, the implementation of smart technologies instead of traditional ones should be considered wherever feasible. This paper presents an approach for optimal placement, economic sizing, and operation point search of distribution static VAR compensator (D-SVC) using an exhaustive analytical search. The proposed algorithm introduces quite a few novelties, unique, superior, and repetitive results presented on a distribution test system IEEE 69.
Keywords: Distribution static VAR compensator, distribution system, harmonics, power losses, harmonic spectrum, dynamic model
DOI: 10.3233/JAE-210200
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 69, no. 2, pp. 279-292, 2022
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