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Measurement System for Surface Leakage Current at Epoxy Resin Insulating Materials
(Conference Paper), ,
Dept.of Electrical Enginering, Diponegoro University, Semarang, Indonesia
Abstract
Performance of the insulating material as a new insulator needs to be tested. To determine how well such
performance requires testing with data acquisition techniques from analog to digital. Currently Testing is still off line by using oscilloscope. To increase the accuracy of Electrical Tracking measurement required online measurements by utilizing current sensors and voltage sensors. To test the accuracy of the voltage sensor and current sensor, it must be tested the sensitivity on the voltage sensor. A measuring device that can simulate the voltage and current conditions in the electrical tracking test was made. If no sensitivity test is conducted, then the results obtained may not match the actual voltage and current in the measurement system. The available current and voltage sensors in the market list the values and parameters in the datasheet. But the conditions in the field at the time of its application is influenced many things, especially mechanical and electrical influences. In this paper, measurement of current and voltage at sample of resin epoxy were carried out. Measurement result in this research show the average LC of rice husk ash is 46 mA. The average voltage during insulation failure in rice husk ash sample is 2,829 volts. The first discharge time on the average rice husk ash sample occurred at the 114 second. The first discharge current of the rice husk ash sample was at 20 mA.
The average voltage during the first discharge on the ash of rice husk ash is 3,449 volts. The time of insulation failure on the average rice husk ash sample occurred at 4.661 seconds. © 2018 IEEE.
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Author keywords
Data Acquisition Epoxy Resin Leakage Current Sensitivity
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Data acquisition Epoxy resins Insulating materials Insulation Leakage currents
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Proceedings - 2018 5th International Conference on Information Technology, Computer and Electrical Engineering, ICITACEE 2018
13 December 2018, Article number 8576936, Pages 268-271
5th International Conference on Information Technology, Computer and Electrical Engineering, ICITACEE 2018; Semarang; Indonesia; 26 September 2018 through 28 September 2018; Category numberCFP1889Z-PRT; Code 143726
Syakur, A. Wahyudi Jumrianto
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Silicones | Insulating materials | Polymeric insulators
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References (10)
Engineering uncontrolled terms
Analog-to-digital Insulation failures Measurement system Mechanical and electrical On-line measurement Sensitivity Sensitivity tests Surface leakage currents
Engineering main heading:
Electronic equipment testing
Naidu, M.S., Kamaraju, V.
(2004) High Voltage Engineering. . 3rd ed. New Delhi
Hackam, R.
(1998) Proceedings of the International Symposium on Electrical Insulating Materials, pp. 1-16.
.
Kind, D.
(1978) An Introduction to High Voltage Experimental Techniques. New Delhi. .
Chang, R.J., Mazeika, L.
(2000) IEEE Transactions on Dielectrics and Electrical Insulation, 7 (3), pp. 394-400. . doi: 10.1109/94.848923
Piah, M.A.M., Darus, A., Hassan, A.
(2005) IEEE Transactions on Dielectrics and Electrical Insulation, 12 (6), pp. 1259-1265. . doi: 10.1109/TDEI.2005.1561806
ISBN: 978-153865527-6
Source Type: Conference Proceeding Original language: English
DOI: 10.1109/ICITACEE.2018.8576936 Document Type: Conference Paper
Volume Editors: Facta M.,Riyadi M.A.,Arfan M.,Widianto E.D.
Publisher: Institute of Electrical and Electronics Engineers Inc.
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Cited 391 times
2
Outdoor high voltage polymeric insulators
Cited 27 times
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Cited 34 times
4
Analysis of electrical activity associated with inclined-plane tracking and erosion of insulating materials
Cited 19 times
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Electrical tracking performance of LLDPE-natural rubber blends by employing combination of leakage current level and rate of carbon track propagation
Cited 27 times
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(2009) Annual Report - Conference on Electrical Insulation and Dielectric Phenomena, CEIDP, art. no.
5377719, pp. 701-704. . ISBN: 978-142444559-2
doi: 10.1109/CEIDP.2009.5377719
Schmidt, L.E., Kornmann, X., Krivda, A., Hillborg, H.
(2010) IEEE Transactions on Dielectrics and Electrical Insulation, 17 (2), art. no. 5448109, pp. 533-540.
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doi: 10.1109/TDEI.2010.5448109
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(2011) Gaodianya Jishu/High Voltage Engineering, 37 (11), pp. 2780-2785. .
(1986) Methods for Evaluating Resistance to Tracking and Erosion of Electrical Insulating Materials Used under Severe Ambient Conditions, 1st Revisi
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© Copyright 2019 Elsevier B.V., All rights reserved.
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Electrical tracking in cycloaliphatic epoxy based nanostructured composites
Cited 5 times
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Tracking and erosion resistance of high temperature vulcanizing ATH-free silicone rubber
Cited 43 times
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Experimental investigation on electrical tracking of epoxy resin compound with silicon rubber
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Abstract: Performance of the insulating material as a new insulator needs to be tested.
To determine how well such performance requires testing with data acquisition techniques fro... View more
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Performance of the insulating material as a new insulator needs to be tested. To determine how well such performance requires testing with data acquisition techniques from analog to digital. Currently Testing is still off line by using oscilloscope. To increase the accuracy of Electrical Tracking measurement required online measurements by utilizing current sensors and voltage sensors. To test the accuracy of the voltage sensor and current sensor, it must be tested the sensitivity on the voltage sensor. A measuring device that can simulate the voltage and current conditions in the electrical tracking test was made. If no sensitivity test is conducted, then the results obtained may not match the actual voltage and current in the measurement system. The available current and voltage sensors in the market list the values and parameters in the datasheet. But the conditions in the field at the time of its application is influenced many things, especially mechanical and electrical influences. In this paper, measurement of current and voltage at sample of resin epoxy were carried out. Measurement result in this research show the average LC of rice husk ash is 46 mA. The average voltage during insulation failure in rice husk ash sample is 2,829 volts. The first discharge time on the average rice husk ash sample occurred at the 114 second. The first discharge current of the rice husk ash sample was at 20 mA. The average voltage during the first discharge on the ash of rice husk ash is 3,449 volts. The time of insulation failure on the average rice husk ash sample occurred at 4.661 seconds.
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Date of Conference: 27-28 Sept. 2018 Date Added to IEEE Xplore: 17 December 2018
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INSPEC Accession Number: 18311585 DOI: 10.1109/ICITACEE.2018.8576936 Publisher: IEEE
Conference Location: Semarang, Indonesia
I. Introduction
In transmission line and distribution network systems, a conductor with another conductor is insulated by air, while a conductor with a tower or supporting pole is insulated by a solid insulating material called an insulator [1]. The most common and widely used insulation materials in Indonesia are ceramics and glass. The advantages of ceramic and glass insulating materials are good heat capacity and low thermal conductivity, corrosion resistant, hard and strong, but the ceramic and glass
insulation materials have a mechanical weakness that is heavy and water-absorbing (hygroscopic) so that leakage current easily flow on a surface that can cause flashover [1– 3]
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Abstract: This paper presents the performance of 8FSK base on PACTOR I data transfer protocol over AWGN channel. PACTOR I is a classic digital mode that once gain name in radio ama... View more
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This paper presents the performance of 8FSK base on PACTOR I data transfer protocol over AWGN channel. PACTOR I is a classic digital mode that once gain name in radio amateur community due to the reliability. The modulation type is always 2FSK and still been use in the latest advance modem of PACTOR 4 for robust mode. Using AWGN channel model, the throughput performance was studied base on 8FSK modulation to increase the performance. Simulation result was focus on PACTOR I basic data transfer with stop and wait ARQ type. Some parameters such as idle time and Huffman compression were not included in the calculation to focus more on modulation effect and throughput.
Date of Conference: 27-28 Sept. 2018 Date Added to IEEE Xplore: 17 December 2018
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INSPEC Accession Number: 18362719 DOI: 10.1109/ICITACEE.2018.8576920 Publisher: IEEE
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Conference Location: Semarang, Indonesia
Mohd Yazid Ab Razak
Faculty of Engineering and Build Environment, Universiti Kebangsaan, Malaysia, Selangor, Bangi
Nasharuddin Zainal
Faculty of Engineering and Build Environment, Universiti Kebangsaan, Malaysia, Selangor, Bangi
Abd Rahim Mat Sidek
Mindmatics Sdn Bhd, Kajang, Selangor
I. Introduction
Long distance communication mostly handled by satellite and optical communication. This type of communication required infrastructure and facilities which are not friendly in cost. Satellite communication required line-of-sight to operate and this causing limits in coverage. To overcome the situation, users such as military [1] and shipping chooses to use High Frequency (HF) as one of the communication channel. Popularity of using HF channel was not so popular these days but it is still important for some users such as military, shipping and radio amateurs.
HF band have been used for long distance data communication and radar [2] for many years despite all limitation in the spectrum. Long distance communication is achieved by the reflection of radio wave in the ionospheres. The capabilities to operate beyond-line-of-sigh (BLOS) provides near global connection without repeaters. This makes it suitable for radio amateurs and also base station tactical communication with a minimum cost [3]. For example, Malaysia emergency service have join rescue mission after tsunami in Acheh on December 2004.
With all infrastructure damage, it is almost impossible to have communication in the area. They overcome this by HF communication system.
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Mohd Yazid Ab Razak
Faculty of Engineering and Build Environment, Universiti Kebangsaan, Malaysia, Selangor, Bangi
Nasharuddin Zainal
Faculty of Engineering and Build Environment, Universiti Kebangsaan, Malaysia, Selangor, Bangi
Abd Rahim Mat Sidek
Mindmatics Sdn Bhd, Kajang, Selangor
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4/22/2020 The Spreading of Misinformation online: 3D Simulation - IEEE Conference Publication
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3Author(s) Pardis Pourghomi ; Milan Dordevic ; Fadi Safieddine View All Authors
The Spreading of Misinformation online: 3D Simulation
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Abstract Document Sections I. Introduction II. Literature Review III. Research
Methodology IV. 3D Simulation
Results V. Analysis and
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Abstract: Social media is becoming the de-facto platform for the dissemination of information as research suggests more Internet users are using social media as their main source o... View more
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Published in: 2018 5th International Conference on Information Technology, Computer, and Electrical Engineering (ICITACEE)
Abstract:
Social media is becoming the de-facto platform for the dissemination of information as research suggests more Internet users are using social media as their main source of news. In this model, the spread of unverified information is becoming a common place where some could share misinformation as fact. News sharing on social media lacks the traditional verification methods used by professional media. In previous publications, the authors presented a model that shows the extent of the problem thus suggesting the design of a tool that could assist users to authenticate information using a conceptual approached called `right-click authenticate' button. A two-dimensional simulation provided bases for a proof-of-concept and identification of key variables. This paper uses Biolayout three-dimensional modelling to expand their simulations of different scenarios. Using the given variables and values, this paper presents a better understanding of how misinformation travels in the spatial space of social media. The findings further confirmed that the approach of `right-click authenticate' button would dramatically cut back the spread of misinformation online.
Date of Conference: 27-28 Sept. 2018 INSPEC Accession Number: 18311592 DOI: 10.1109/ICITACEE.2018.8576937
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4/22/2020 The Spreading of Misinformation online: 3D Simulation - IEEE Conference Publication
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Date Added to IEEE Xplore: 17 December 2018
ISBN Information:
Publisher: IEEE
Conference Location: Semarang, Indonesia
Pardis Pourghomi
College of Engineering and Technology, American University of the Middle East, Egaila, Kuwait
Milan Dordevic
College of Engineering and Technology, American University of the Middle East, Egaila, Kuwait
Fadi Safieddine
School of Business and Management, Queen Mary University of London, London, UK
I. Introduction
Social media nowadays is attracting millions of users to its various platforms, enabling them to spread information and share their interests across the web easily. Due to the huge amount of unverified information presented as facts, most of what is seen online cannot and could not be trusted. Malicious users who have motives to sway other users’ opinions and beliefs tend to be the source of spreading misinformation.
Misinformation could be in the form of chain emails, spam, fake news, dotted images, out of context images, out of context videos, misleading news and many more. The spread of this misinformation does not only waste users’ time and efforts, but could also be dangerous. Therefore, there have been attempts to find means or tools that would limit the spread of misinformation on social media, hence improving the users’
experience in general and bring some credibility to verifying content shared online [1] [2]. The approach consists of developing a technique that limits the spread of fake news by allowing users to authenticate it from within their web browsers. If this piece of information was deemed to be unauthentic, then the user will likely stop sharing it with others out of social responsibility, and hence will drastically limit its spread.
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Pardis Pourghomi
College of Engineering and Technology, American University of the Middle East, Egaila, Kuwait
Milan Dordevic
College of Engineering and Technology, American University of the Middle East, Egaila, Kuwait
Fadi Safieddine
School of Business and Management, Queen Mary University of London, London, UK
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