DocumentCode
1602064
Title
Estimation and elimination of harmonics in power system using modified FFT with variable learning of Adaline
Author
Sharma, Neeraj ; Gupta, Rakesh ; Sharma, Dulara ; Swarnkar, Anil ; Gupta, Nikhil
Author_Institution
Dept. of Electr. Eng., Malaviya Nat. Inst. of Technol., Jaipur, India
fYear
2010
Firstpage
79
Lastpage
86
Abstract
This paper presents a new technique for harmonic detection, estimation and elimination in power system. The approach expresses the input signal in the form of Fourier Transformation and adjusts the Fourier coefficients using Linear Adaptive Filters (Adaline). Two of the existing approaches using conventional Fast Fourier transformation (FFT) and FFT with modified W-H learning have been discussed with their merits and demerits. A new approach has been proposed using a network comprising three different Adalines and involving variable learning rate. This approach is able to mitigate the shortcomings of the existing techniques and is time efficient as well. The detailed architecture for the proposed approach has been discussed and the algorithm has then been tested on different test signals. The approach has been compared with the existing techniques and it´s superiority over these has thus been established.
Keywords
adaptive filters; fast Fourier transforms; harmonics suppression; learning (artificial intelligence); power engineering computing; power system harmonics; Adaline variable learning; Fourier coefficients; fast Fourier transformation; harmonic detection technique; harmonic estimation; linear adaptive filters; modified FFT; modified W-H learning; power system harmonic elimination; Active filters; Adaptive filters; Artificial neural networks; Neural networks; Nonlinear filters; Power harmonic filters; Power system dynamics; Power system harmonics; Testing; Total harmonic distortion; Adaline Neural Networks; Fast Fourier transformation; Harmonics; Total Harmonic Distortion; W-H learning;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Power Quality and Supply Reliability Conference (PQ), 2010
Conference_Location
Kuressaare
Print_ISBN
978-1-4244-6978-9
Type
conf
DOI
10.1109/PQ.2010.5550016
Filename
5550016
Link To Document