CONTROL OF LOAD FREQUENCY IN INTERCONNECTED POWER SYSTEMS: A COMPARATIVE ANALYSIS OF PID AND PI CONTROLLERS
1 Electrical and Electronic Engineering Department, University of Maiduguri
2 Department of Electrical and Electronic engineering Technology. School of Engineering, Abdu-Gusau Polytechnics, Talata Mafara, Zamfara state
3 Hydraulic Equipment Development institute, Kano state.
* Corresponding author: engr.massa@gmail.com
2 Department of Electrical and Electronic engineering Technology. School of Engineering, Abdu-Gusau Polytechnics, Talata Mafara, Zamfara state
3 Hydraulic Equipment Development institute, Kano state.
* Corresponding author: engr.massa@gmail.com
Abstract
This paper presents load frequency control of two area interconnected power system
using PID controller and PI controller. The main target of load frequency control is to
maintain good tracking of load demand and zero steady state errors for frequency
deviation in a multi-area power system. This help to maintain a balance of energy and
frequency of power generation system and enable proper power exchange for better
trading. In the paper, a single area power generation system was first modeled to ensure
that the right working condition of a power system is mimicked. Thereafter, the model
single area is extended to a two-area generation system. The PID and PI controllers
were applied for frequency control independently. Results analysis showed that, the PID
has a better performance over the PI controller in terms of overshoot and settling time.
Keywords
Decision tree
swarm intelligence
metaheuristics.
How to Cite
M, M. M., Usman, J., Sarki, A., Abba, B. B., & Abdulkadir, M. (2021). CONTROL OF LOAD FREQUENCY IN INTERCONNECTED POWER SYSTEMS: A COMPARATIVE ANALYSIS OF PID AND PI CONTROLLERS. Zaria Journal of Electrical Engineering Technology, 10(2), 93-101.
M. M. M, J. Usman, A. Sarki, B. B. Abba, and M. Abdulkadir, "CONTROL OF LOAD FREQUENCY IN INTERCONNECTED POWER SYSTEMS: A COMPARATIVE ANALYSIS OF PID AND PI CONTROLLERS," Zaria Journal of Electrical Engineering Technology, vol. 10, no. 2, pp. 93-101, September 2021.