Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow
Smart Grid is an advanced two way data and energy flow capable of self-healing, adaptive, resilient, and sustainable with prediction capability of possible fault. This article aimed to disclose Smart Grid communication in a logical way to facilitate the understanding of each component function. The...
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Indonesian Institute of Sciences
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doaj-204cc5269b714faab519fce8e4be27442020-11-25T03:09:32ZengIndonesian Institute of SciencesJournal of Mechatronics, Electrical Power, and Vehicular Technology2087-33792088-69852019-11-01102738410.14203/j.mev.2019.v10.73-84231Smart Grid communication applications: measurement equipment and networks architecture for data and energy flowTinton Dwi Atmaja0Dian Andriani1Rudi DarussalamRCEPM-LIPIResearch Unit for Clean Technology, Indonesian Institute of ScienceSmart Grid is an advanced two way data and energy flow capable of self-healing, adaptive, resilient, and sustainable with prediction capability of possible fault. This article aimed to disclose Smart Grid communication in a logical way to facilitate the understanding of each component function. The study was focused on the improvement, advantages, common used design, and possible feature of Smart Grid communication components. The results of the study divide the Smart Grid communication application into two main category i.e. measurement equipment and network architecture. Measurement equipment consists of Advance Metering Infrastructure, Phasor Measurement Unit, Intelligent Electronic Devices, and Wide Area Measurement System. The network architecture is divided based on three hierarchies; local area network for 1 to 100 m with 100 kbps data rate, neighbour area network for 100 m to 10 km with 100 Mbps data rate, and wide area network for up to 100 km with 1 Gbps data rate. More information is provided regarding the routing protocol for each network from various available protocols. The final section presents the energy and data flow architecture for Smart Grid implementation based on the measurement equipment and the network suitability. This article is expected to provide a comprehensive guide and comparison surrounding the technologies supporting Smart Grid implementation especially on communication applications.http://www.mevjournal.com/index.php/mev/article/view/485smart grid applicationphasor measurement unitcommunication networkcommunication protocolenergy and data flow. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tinton Dwi Atmaja Dian Andriani Rudi Darussalam |
spellingShingle |
Tinton Dwi Atmaja Dian Andriani Rudi Darussalam Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow Journal of Mechatronics, Electrical Power, and Vehicular Technology smart grid application phasor measurement unit communication network communication protocol energy and data flow. |
author_facet |
Tinton Dwi Atmaja Dian Andriani Rudi Darussalam |
author_sort |
Tinton Dwi Atmaja |
title |
Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow |
title_short |
Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow |
title_full |
Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow |
title_fullStr |
Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow |
title_full_unstemmed |
Smart Grid communication applications: measurement equipment and networks architecture for data and energy flow |
title_sort |
smart grid communication applications: measurement equipment and networks architecture for data and energy flow |
publisher |
Indonesian Institute of Sciences |
series |
Journal of Mechatronics, Electrical Power, and Vehicular Technology |
issn |
2087-3379 2088-6985 |
publishDate |
2019-11-01 |
description |
Smart Grid is an advanced two way data and energy flow capable of self-healing, adaptive, resilient, and sustainable with prediction capability of possible fault. This article aimed to disclose Smart Grid communication in a logical way to facilitate the understanding of each component function. The study was focused on the improvement, advantages, common used design, and possible feature of Smart Grid communication components. The results of the study divide the Smart Grid communication application into two main category i.e. measurement equipment and network architecture. Measurement equipment consists of Advance Metering Infrastructure, Phasor Measurement Unit, Intelligent Electronic Devices, and Wide Area Measurement System. The network architecture is divided based on three hierarchies; local area network for 1 to 100 m with 100 kbps data rate, neighbour area network for 100 m to 10 km with 100 Mbps data rate, and wide area network for up to 100 km with 1 Gbps data rate. More information is provided regarding the routing protocol for each network from various available protocols. The final section presents the energy and data flow architecture for Smart Grid implementation based on the measurement equipment and the network suitability. This article is expected to provide a comprehensive guide and comparison surrounding the technologies supporting Smart Grid implementation especially on communication applications. |
topic |
smart grid application phasor measurement unit communication network communication protocol energy and data flow. |
url |
http://www.mevjournal.com/index.php/mev/article/view/485 |
work_keys_str_mv |
AT tintondwiatmaja smartgridcommunicationapplicationsmeasurementequipmentandnetworksarchitecturefordataandenergyflow AT dianandriani smartgridcommunicationapplicationsmeasurementequipmentandnetworksarchitecturefordataandenergyflow AT rudidarussalam smartgridcommunicationapplicationsmeasurementequipmentandnetworksarchitecturefordataandenergyflow |
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