A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network
This study proposes SVM based Random Subspace (RS) ensemble classifier to discriminate different Power Quality Events (PQEs) in a photovoltaic (PV) connected Microgrid (MG) model. The MG model is developed and simulated with the presence of different PQEs (voltage and harmonic related signals and di...
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sg-ntu-dr.10356-1630922022-11-21T05:29:56Z A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network Vinayagam, Arangarajan Mohammad Lutfi Othman Veerasamy, Veerapandiyan Balaji, Suganthi Saravan Ramaiyan, Kalaivani Radhakrishnan, Padmavathi Raman, Mohan Das Noor Izzri Abdul Wahab School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Discrete Wavelet Transform Wavelet Analysis This study proposes SVM based Random Subspace (RS) ensemble classifier to discriminate different Power Quality Events (PQEs) in a photovoltaic (PV) connected Microgrid (MG) model. The MG model is developed and simulated with the presence of different PQEs (voltage and harmonic related signals and distinctive transients) in both on-grid and off-grid modes of MG network, respectively. In the pre-stage of classification, the features are extracted from numerous PQE signals by Discrete Wavelet Transform (DWT) analysis, and the extracted features are used to learn the classifiers at the final stage. In this study, first three Kernel types of SVM classifiers (Linear, Quadratic, and Cubic) are used to predict the different PQEs. Among the results that Cubic kernel SVM classifier offers higher accuracy and better performance than other kernel types (Linear and Quadradic). Further, to enhance the accuracy of SVM classifiers, a SVM based RS ensemble model is proposed and its effectiveness is verified with the results of kernel based SVM classifiers under the standard test condition (STC) and varying solar irradiance of PV in real time. From the final results, it can be concluded that the proposed method is more robust and offers superior performance with higher accuracy of classification than kernel based SVM classifiers. Published version This work was supported by the Geran Putra Berimpak from the Universiti Putra Malaysia (GPB UPM) under Grant UPM/800-3/3/1/GPB/ 2019/9671700. The grant was received by Dr Mohammad Lutfi Othman. 2022-11-21T05:29:56Z 2022-11-21T05:29:56Z 2022 Journal Article Vinayagam, A., Mohammad Lutfi Othman, Veerasamy, V., Balaji, S. S., Ramaiyan, K., Radhakrishnan, P., Raman, M. D. & Noor Izzri Abdul Wahab (2022). A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network. PloS One, 17(1), e0262570-. https://dx.doi.org/10.1371/journal.pone.0262570 1932-6203 https://hdl.handle.net/10356/163092 10.1371/journal.pone.0262570 35085307 2-s2.0-85123708581 1 17 e0262570 en PloS one © 2022 Vinayagam et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. application/pdf |
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Engineering::Electrical and electronic engineering Discrete Wavelet Transform Wavelet Analysis Vinayagam, Arangarajan Mohammad Lutfi Othman Veerasamy, Veerapandiyan Balaji, Suganthi Saravan Ramaiyan, Kalaivani Radhakrishnan, Padmavathi Raman, Mohan Das Noor Izzri Abdul Wahab A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
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This study proposes SVM based Random Subspace (RS) ensemble classifier to discriminate different Power Quality Events (PQEs) in a photovoltaic (PV) connected Microgrid (MG) model. The MG model is developed and simulated with the presence of different PQEs (voltage and harmonic related signals and distinctive transients) in both on-grid and off-grid modes of MG network, respectively. In the pre-stage of classification, the features are extracted from numerous PQE signals by Discrete Wavelet Transform (DWT) analysis, and the extracted features are used to learn the classifiers at the final stage. In this study, first three Kernel types of SVM classifiers (Linear, Quadratic, and Cubic) are used to predict the different PQEs. Among the results that Cubic kernel SVM classifier offers higher accuracy and better performance than other kernel types (Linear and Quadradic). Further, to enhance the accuracy of SVM classifiers, a SVM based RS ensemble model is proposed and its effectiveness is verified with the results of kernel based SVM classifiers under the standard test condition (STC) and varying solar irradiance of PV in real time. From the final results, it can be concluded that the proposed method is more robust and offers superior performance with higher accuracy of classification than kernel based SVM classifiers. |
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School of Electrical and Electronic Engineering |
author_facet |
School of Electrical and Electronic Engineering Vinayagam, Arangarajan Mohammad Lutfi Othman Veerasamy, Veerapandiyan Balaji, Suganthi Saravan Ramaiyan, Kalaivani Radhakrishnan, Padmavathi Raman, Mohan Das Noor Izzri Abdul Wahab |
format |
Article |
author |
Vinayagam, Arangarajan Mohammad Lutfi Othman Veerasamy, Veerapandiyan Balaji, Suganthi Saravan Ramaiyan, Kalaivani Radhakrishnan, Padmavathi Raman, Mohan Das Noor Izzri Abdul Wahab |
author_sort |
Vinayagam, Arangarajan |
title |
A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
title_short |
A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
title_full |
A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
title_fullStr |
A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
title_full_unstemmed |
A random subspace ensemble classification model for discrimination of power quality events in solar PV microgrid power network |
title_sort |
random subspace ensemble classification model for discrimination of power quality events in solar pv microgrid power network |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/163092 |
_version_ |
1751548549256970240 |