Optimal location of SSSC based on PSO to improve voltage profile and reduce Iraqi grid system losses

Author

Ali, I. I.

Source

Engineering and Technology Journal

Issue

Vol. 35, Issue 4A (30 Apr. 2017), pp.372-380, 9 p.

Publisher

University of Technology

Publication Date

2017-04-30

Country of Publication

Iraq

No. of Pages

9

Main Subjects

Engineering & Technology Sciences (Multidisciplinary)

Abstract EN

This search aims to study the effects of (SSSC)”static synchronous series compensator– one of the FACTS devices” – on reducing the power losses and improving voltage profile of Iraqi national grid system.

Proposed particle swarm optimization (“PSO”) to determine the optimum location of “SSSC” devices based objective function that depends on the power and voltage as fitness.

The proposed algorithm is checked on the IEEE- 9bus.

Then is applied on the Iraqi national grid.

The results show the ability of the proposed method to determine the optimum location of static synchronous series compensator (SSSc) that reduced losses of active power and improve the bus “voltage profile”.

The proposed algorithms are implemented by using MATLAB package version 7.10

American Psychological Association (APA)

Ali, I. I.. 2017. Optimal location of SSSC based on PSO to improve voltage profile and reduce Iraqi grid system losses. Engineering and Technology Journal،Vol. 35, no. 4A, pp.372-380.
https://search.emarefa.net/detail/BIM-795462

Modern Language Association (MLA)

Ali, I. I.. Optimal location of SSSC based on PSO to improve voltage profile and reduce Iraqi grid system losses. Engineering and Technology Journal Vol. 35, no. 4A (2017), pp.372-380.
https://search.emarefa.net/detail/BIM-795462

American Medical Association (AMA)

Ali, I. I.. Optimal location of SSSC based on PSO to improve voltage profile and reduce Iraqi grid system losses. Engineering and Technology Journal. 2017. Vol. 35, no. 4A, pp.372-380.
https://search.emarefa.net/detail/BIM-795462

Data Type

Journal Articles

Language

English

Notes

Includes appendices : p. 379-380

Record ID

BIM-795462