Power systems frequency estimation using amplitude tracking square wave for low-end protective relays

Growing emphasis on the disturbance-free electrical power distribution demands for economical and efficient smart estimation techniques in the automation architectures of the future medium voltage (MV)/ low voltage (LV) distribution networks. Unlike high-end protective relays which are typically use...

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Main Authors: Ukil, Abhisek, Yeap, Yew Ming, Satpathi, Kuntal
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/143619
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1436192021-02-03T02:39:59Z Power systems frequency estimation using amplitude tracking square wave for low-end protective relays Ukil, Abhisek Yeap, Yew Ming Satpathi, Kuntal School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Disturbance Detection Frequency Estimation Growing emphasis on the disturbance-free electrical power distribution demands for economical and efficient smart estimation techniques in the automation architectures of the future medium voltage (MV)/ low voltage (LV) distribution networks. Unlike high-end protective relays which are typically used in the high voltage transmission systems, low-end economical protective relays are suitable for the MV/LV distribution networks. Frequency estimation is one of the pre-requisites of the electrical protective relays in such systems. The low-end protective relays demand for computationally efficient signal processing algorithms for frequency estimation thus eliminating the need to integrate sophisticated hardware components and advanced software routines. In this paper, time-domain based frequency estimation is proposed, which is focused for the implementation in the low-end relays for MV/LV distribution networks. Frequency estimation is based on the novel amplitude tracking square wave (ATSW), which is fast and sensitive to disturbances in the monitored signal. Performance of the ATSW for frequency estimation is analyzed on the recorded real-world disturbance signals as well as on the various simulated case studies. Simplicity of the ATSW for low-end relays is substantiated by comparative analysis with the existing frequency estimation techniques. In addition to the frequency estimation, versatility of the ATSW is substantiated by application for transient state detection in the AC and DC power systems. Accepted version 2020-09-14T08:03:24Z 2020-09-14T08:03:24Z 2019 Journal Article Ukil, A., Yeap, Y. M., & Satpathi, K. (2019). Power systems frequency estimation using amplitude tracking square wave for low-end protective relays. Measurement, 141, 70-84. doi:10.1016/j.measurement.2019.03.068 - https://hdl.handle.net/10356/143619 10.1016/j.measurement.2019.03.068 141 70 84 en Measurement © 2019 Elsevier. All rights reserved. This paper was published in Measurement and is made available with permission of Elsevier. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
Disturbance Detection
Frequency Estimation
spellingShingle Engineering::Electrical and electronic engineering
Disturbance Detection
Frequency Estimation
Ukil, Abhisek
Yeap, Yew Ming
Satpathi, Kuntal
Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
description Growing emphasis on the disturbance-free electrical power distribution demands for economical and efficient smart estimation techniques in the automation architectures of the future medium voltage (MV)/ low voltage (LV) distribution networks. Unlike high-end protective relays which are typically used in the high voltage transmission systems, low-end economical protective relays are suitable for the MV/LV distribution networks. Frequency estimation is one of the pre-requisites of the electrical protective relays in such systems. The low-end protective relays demand for computationally efficient signal processing algorithms for frequency estimation thus eliminating the need to integrate sophisticated hardware components and advanced software routines. In this paper, time-domain based frequency estimation is proposed, which is focused for the implementation in the low-end relays for MV/LV distribution networks. Frequency estimation is based on the novel amplitude tracking square wave (ATSW), which is fast and sensitive to disturbances in the monitored signal. Performance of the ATSW for frequency estimation is analyzed on the recorded real-world disturbance signals as well as on the various simulated case studies. Simplicity of the ATSW for low-end relays is substantiated by comparative analysis with the existing frequency estimation techniques. In addition to the frequency estimation, versatility of the ATSW is substantiated by application for transient state detection in the AC and DC power systems.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Ukil, Abhisek
Yeap, Yew Ming
Satpathi, Kuntal
format Article
author Ukil, Abhisek
Yeap, Yew Ming
Satpathi, Kuntal
author_sort Ukil, Abhisek
title Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
title_short Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
title_full Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
title_fullStr Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
title_full_unstemmed Power systems frequency estimation using amplitude tracking square wave for low-end protective relays
title_sort power systems frequency estimation using amplitude tracking square wave for low-end protective relays
publishDate 2020
url https://hdl.handle.net/10356/143619
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