Thursday, 12 September 2019

Analysis of Certain Multi Objective Aspect For Distribution Systems in The Presence Of CapacitorsUsing Modified Optimization Algorithm

Volume 11 Issue 2 October - December 2017

Research Paper

Analysis of Certain Multi Objective Aspect For Distribution Systems in The Presence Of CapacitorsUsing Modified Optimization Algorithm

Chintalapudi V suresh*, M. S. Ravikumar**, U. Ramanaiah***, S. Siva Nagaraju****
* Professor, Department of Electrical and Electronics Engineering, VVIT, Guntur, India.
** Professor, Department of Electrical and Electronics Engineering, LBRCE, Vijayawada, India.
***Assistant Professor, Department of Electrical and Electronics Engineering, VVIT, Guntur, India.
**** Professor, Department of Electrical and Electronics Engineering, UCEK, JNTUK, Kakinada, India.
Suresh, C. V., Giridhar, M. S., Ramanaiah, U., Sivanagaraju, S. (2017). Analysis of Certain Multi Objective Aspect For Distribution Systems in The Presence Of Capacitors Using Modified Optimization Algorithm. i-manager’s Journal on Electrical Engineering, 11(2), 26-40. https://doi.org/10.26634/jee.11.2.13853

Abstract

This study proposes a novel framework to analyze the multi objective optimization aspects of distribution system in the presence of capacitors. This study associated with the economical and technical aspects of the system by means of net savings, voltage deviation, and section current index objectives. The system in the presence of capacitors exhibits efficient performance, for this, an optimal placement strategy is presented based on power loss indexes and total power losses using proposed modified cuckoo search algorithm. In order to explore the problem more realistically and to solve multi objective optimization problem in the presence of capacitors, a novel methodology based on non-dominated sorting and fuzzy decision approaches is proposed. The feasibility and effectiveness of the proposed method are examined on standard 15-node, 33-node, and 69-node test systems. According to the analytical results, the proposed framework in the presence of capacitors enhances the system performance more effectively [14].

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