Abstract
AbstractStability of nominal frequency and voltage level in an electric power system is the primary control issue of practicing engineers. Any deterioration in these two parameters will affect the performance and life expectancy of the associated machinery to the power system. Hence, controllers are installed and set for a specific working situation and deal with small variations in load demand to keep the frequency and terminal voltage magnitude within the permissible limits. As the system performance can be improved with selecting suitable controller, an attempt has been made to design fractional-order PID (FOPID) controller for combined frequency and voltage control problems. This paper presents plan and execution examination of FOPID controller for simultaneous load frequency and voltage control of power system using recently developed nature-motivated powerful optimization technique, i.e., moth flame optimization algorithm. The first part of the present work demonstrates the implementation of the proposed technique on frequency stabilization of isolated power system with AVR for excitation voltage control. The superiority and effectiveness of the proposed approach are tested by comparing the dynamic response of the system with PID controllers optimized by other intelligent techniques. Then the present work is extended to multi-unit two-area power system. The tuning ability of the algorithm is extensively and comparatively investigated.
Funder
All India Council for Technical Education
TEQIP III
Publisher
Springer Science and Business Media LLC
Reference50 articles.
1. Saadat H (2002) Power system analysis. McGraw-Hill, New York
2. Elgerd OI (2008) Electric energy system theory: an introduction, 2nd edn. McGraw-Hill, New York
3. Kumar P, Kothari DP (2005) Recent philosophies of automatic generation control strategies in power systems. IEEE Trans Power Syst 20(1):346–357
4. Fosha CE, Elgerd OI (1970) The megawatt frequency control problem: a new approach via optimal control theory. IEEE Trans Power Appar Syst PAS-89(4):563–577
5. Elgerd OI, Fosha C (1970) Optimum megawatt frequency control of multi-area electric energy systems. IEEE Trans Power Appar Syst PAS-89(4):556–563
Cited by
54 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献