DETECTION AND CLASSIFICATION OF COMPLEX POWER QUALITY DISTURBANCES USING DISCRETE WAVELET TRANSFORM AND RULE BASED DECISION TREE
Abstract
vioft2nntf2t|tblJournal|Abstract_paper|0xf4ffe4322c00000043c8000001000f00
This paper presents a method for the detection and classification of complex power quality (PQ) disturbances using discrete wavelet transform (DWT) based ruled decision tree. The power quality disturbances are generated with the help of MATLAB using the mathematical relations as per IEEE Standard-1159. The investigated PQ disturbances include various combinations of voltage sag, voltage swell, momentary interruption, harmonics, oscillatory transient and impulsive transient. These power quality signals are decomposed using discrete wavelet transform with db4 as mother wavelet up to level 4 of decomposition. The detail coefficients and approximation coefficients are used for recognition of complex PQ disturbances. The features extracted from plots of these coefficients are given as input to the rule-based decision tree for classification of complex PQ disturbances. The effectiveness of proposed algorithm has been established by testing 30 data sets of each complex PQ disturbance obtained by varying the parameters.

Authors
Nitin Kumar Suyan1,Mahendra Kumar2, Fateh L Lohar3, Deepak Agrawal4
Government Engineering College Jhalawar, India1,Government Engineering College Baran, India2, Government Engineering College Jhalawar, India3,Government Engineering College Jhalawar, India4

Keywords
Complex Power Quality Disturbance, Discrete Wavelet Transform, Power Quality, Rule-Based Decision Tree
Yearly Full Views
JanuaryFebruaryMarchAprilMayJuneJulyAugustSeptemberOctoberNovemberDecember
010000000000
Published By :
ICTACT
Published In :
ICTACT Journal on Microelectronics
( Volume: 7 , Issue: 4 , Pages: 1227-1233 )
Date of Publication :
January 2022
Page Views :
140
Full Text Views :
2

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.