Voltage collapse optimization for the Iraqi extra high Voltage 400 kV grid based on particle swarm optimization

Joint Authors

Tawfiq, Layth
Said, Wafa

Source

The Iraqi Journal of Electrical and Electronic Engineering

Issue

Vol. 13, Issue 1 (30 Jun. 2017), pp.17-31, 15 p.

Publisher

University of Basrah College of Engineering

Publication Date

2017-06-30

Country of Publication

Iraq

No. of Pages

15

Main Subjects

Electronic engineering

Topics

Abstract EN

(The continuously ever-growing demand for the electrical power causing the continuous expansion and complexity of power systems, environmental and economic factors forcing the system to work near the critical limits of stability, so research's stability have become research areas worthy of attention in the resent day.

The present work includes two phases: The first one is to determine the Voltage Stability Index for the more insensitive load bus to the voltage collapse in an interconnected power system using fast analyzed method based on separate voltage and current for PQ buses from these of PV buses, while the second phase is to suggested a simulated optimization technique for optimal voltage stability profile all around the power system.

The optimization technique is used to adjust the control variables elements: Generator voltage magnitude, active power of PV buses, VAR of shunt capacitor banks and the position of transformers tap with satisfied the limit of the state variables (load voltages, generator reactive power and the active power of the slack bus).

These control variables are main effect on the voltage stability profile to reach the peak prospect voltage stable loading with acceptable voltage profile.

An optimized voltage collapse based on Particle Swarm Optimization has been tested on both of the IEEE 6 bus system and the Iraqi Extra High Voltage 400 kV Grid 28 bus.

To ensure the effectiveness of the optimization technique a comparison between the stability indexes for load buses before and after technical application are presented.

Simulation results have been executed using Matlab software).

American Psychological Association (APA)

Said, Wafa& Tawfiq, Layth. 2017. Voltage collapse optimization for the Iraqi extra high Voltage 400 kV grid based on particle swarm optimization. The Iraqi Journal of Electrical and Electronic Engineering،Vol. 13, no. 1, pp.17-31.
https://search.emarefa.net/detail/BIM-770066

Modern Language Association (MLA)

Said, Wafa& Tawfiq, Layth. Voltage collapse optimization for the Iraqi extra high Voltage 400 kV grid based on particle swarm optimization. The Iraqi Journal of Electrical and Electronic Engineering Vol. 13, no. 1 (2017), pp.17-31.
https://search.emarefa.net/detail/BIM-770066

American Medical Association (AMA)

Said, Wafa& Tawfiq, Layth. Voltage collapse optimization for the Iraqi extra high Voltage 400 kV grid based on particle swarm optimization. The Iraqi Journal of Electrical and Electronic Engineering. 2017. Vol. 13, no. 1, pp.17-31.
https://search.emarefa.net/detail/BIM-770066

Data Type

Journal Articles

Language

English

Notes

Includes appendices : p. 29-31

Record ID

BIM-770066