DocumentCode
3443023
Title
A Parameter Measurement Method for Power System: Modeling and Its HGA-Based Solution
Author
Li, Y. ; Liu, D.C. ; Du, X.W.
Author_Institution
Wuhan Univ., Wuhan
fYear
2007
fDate
23-25 May 2007
Firstpage
758
Lastpage
762
Abstract
The automatic devices that are widely used in power systems impel a real need for reliable computational algorithms to improve the accuracy of electrical parameter measurement. This paper deals with a hybrid genetic algorithm (HGA)-based measurement method. According to the typical expression of fault signal in power systems, an extremum optimization model that involves electrical parameters and various error parameters is built up firstly in this paper. A HGA-based measurement method is worked out next, which embeds Quasi-Newton method into the process of global search of Genetic Algorithm (GA) and adopts nonuniform mutation strategy. This method takes full advantages of both GA and classical iterative algorithm, which is insensitive to the initial value and has high convergence rate and calculating accuracy. It can get the power system parameters such as amplitudes, phases, work frequency and harmonics with high precision. Some examples are given to demonstrate the feasibility and validity of the proposed method. With notable accurate parameter measurement, it makes a solid foundation of the power system´s further supervision, measurement and control.
Keywords
genetic algorithms; power system faults; power system measurement; HGA; automatic devices; computational algorithms; error parameters; fault signal; hybrid genetic algorithm; iterative algorithm; nonuniform mutation strategy; optimization; parameter measurement method; power system; Electric variables measurement; Genetic algorithms; Genetic mutations; Hybrid power systems; Power measurement; Power system faults; Power system harmonics; Power system measurements; Power system modeling; Power system reliability;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics and Applications, 2007. ICIEA 2007. 2nd IEEE Conference on
Conference_Location
Harbin
Print_ISBN
978-1-4244-0737-8
Electronic_ISBN
978-1-4244-0737-8
Type
conf
DOI
10.1109/ICIEA.2007.4318509
Filename
4318509
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