Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network
In smart grid communication implementation, network traffic pattern is one of the main factors that affect the system's performance. Examining different traffic patterns in smart grid is therefore crucial when analyzing the network performance. Due to the heterogeneous and hybrid nature of smar...
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Maxwell Science Publications
2023
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my.uniten.dspace-221722023-05-16T10:48:05Z Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network Quang D.N. See O.H. Chee L.L. Xuen C.Y. Karuppiah S.A.L. 55758940800 16023044400 55759046300 55758013600 55758814800 In smart grid communication implementation, network traffic pattern is one of the main factors that affect the system's performance. Examining different traffic patterns in smart grid is therefore crucial when analyzing the network performance. Due to the heterogeneous and hybrid nature of smart grid, the type of traffic distribution in the network is still unknown. The traffic that popularly used for simulation and analysis no longer reflects the real traffic in a multi-technology and bi-directional communication system. Hence, in this study, a single-board computer is implemented as a traffic generator which can generate network traffic similar to those generated by various applications in the fully operational smart grid. By placing in a strategic and appropriate position, a collection of traffic generators allow network administrators to investigate and test the effect of heavy traffic on performance of smart grid communication system. © Maxwell Scientific Organization, 2014. Final 2023-05-16T02:48:05Z 2023-05-16T02:48:05Z 2014 Article 10.19026/rjaset.7.436 2-s2.0-84896818531 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84896818531&doi=10.19026%2frjaset.7.436&partnerID=40&md5=68a1cc9211067813cc8a79d7021264b2 https://irepository.uniten.edu.my/handle/123456789/22172 7 8 1587 1597 All Open Access, Hybrid Gold Maxwell Science Publications Scopus |
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In smart grid communication implementation, network traffic pattern is one of the main factors that affect the system's performance. Examining different traffic patterns in smart grid is therefore crucial when analyzing the network performance. Due to the heterogeneous and hybrid nature of smart grid, the type of traffic distribution in the network is still unknown. The traffic that popularly used for simulation and analysis no longer reflects the real traffic in a multi-technology and bi-directional communication system. Hence, in this study, a single-board computer is implemented as a traffic generator which can generate network traffic similar to those generated by various applications in the fully operational smart grid. By placing in a strategic and appropriate position, a collection of traffic generators allow network administrators to investigate and test the effect of heavy traffic on performance of smart grid communication system. © Maxwell Scientific Organization, 2014. |
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55758940800 |
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55758940800 Quang D.N. See O.H. Chee L.L. Xuen C.Y. Karuppiah S.A.L. |
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Quang D.N. See O.H. Chee L.L. Xuen C.Y. Karuppiah S.A.L. |
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Quang D.N. See O.H. Chee L.L. Xuen C.Y. Karuppiah S.A.L. Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
author_sort |
Quang D.N. |
title |
Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
title_short |
Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
title_full |
Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
title_fullStr |
Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
title_full_unstemmed |
Single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
title_sort |
single-board-computer-based traffic generator for a heterogeneous and hybrid smart grid communication network |
publisher |
Maxwell Science Publications |
publishDate |
2023 |
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1806426068804960256 |
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13.211869 |