LoRa-based communication system for data transfer in microgrids
This paper proposes a LoRa-based wireless communication system for data transfer in microgrids. The proposed system allows connection of multiple sensors to the LoRa transceivers, and enables data collection from various units within a microgrid. The proposed system focuses on communications at the...
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doaj-ba93681cfd8e44a99bb867d239d1aff72020-12-10T01:33:20ZengAIMS PressAIMS Electronics and Electrical Engineering2578-15882020-12-014330332510.3934/ElectrEng.2020.3.303LoRa-based communication system for data transfer in microgridsCherechi Ndukwe0M. Tariq Iqbal1Xiaodong Liang2 Jahangir Khan3Lawrence Aghenta41. Faculty of Engineering and Sciences, Memorial University of Newfoundland, St John’s, NL A1B 3X5, Canada1. Faculty of Engineering and Sciences, Memorial University of Newfoundland, St John’s, NL A1B 3X5, Canada2. Department of Electrical and Computer Engineering, University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada3. Transmission Engineering, BC Hydro, 6911 Southpoint Drive, Burnaby, BC, V3N 4X8, Canada1. Faculty of Engineering and Sciences, Memorial University of Newfoundland, St John’s, NL A1B 3X5, CanadaThis paper proposes a LoRa-based wireless communication system for data transfer in microgrids. The proposed system allows connection of multiple sensors to the LoRa transceivers, and enables data collection from various units within a microgrid. The proposed system focuses on communications at the secondary communication level of the microgrid between local controllers of each distributed generation (DG) unit and the microgrid central controller due to the possibility of applying low-bandwidth communication systems at this level. In a proof of concept test bed setup, the data collected by the sensors are sent to the LoRa gateway, which serves as the central monitoring system from which control messages are sent to various microgrid components through their local controllers such as DG units, storage systems and load. In this work, to improve communication security, a private server has been developed using Node-Red instead of cloud servers that are currently used in most Internet-of-Things (IoT) monitoring systems. A range test of the proposed system is carried out to observe the rate of data delivery. It demonstrated over 90% data delivery at 4 km. Finally, a test bed experiment is conducted to validate key features of the proposed system by achieving one-directional data transfer in a grid monitoring system.http://www.aimspress.com/article/10.3934/ElectrEng.2020.3.303?viewType=HTMLcommunication systemdata transferinternet of things (iot)lora technologymicrogridsnode-redprivate server |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Cherechi Ndukwe M. Tariq Iqbal Xiaodong Liang Jahangir Khan Lawrence Aghenta |
spellingShingle |
Cherechi Ndukwe M. Tariq Iqbal Xiaodong Liang Jahangir Khan Lawrence Aghenta LoRa-based communication system for data transfer in microgrids AIMS Electronics and Electrical Engineering communication system data transfer internet of things (iot) lora technology microgrids node-red private server |
author_facet |
Cherechi Ndukwe M. Tariq Iqbal Xiaodong Liang Jahangir Khan Lawrence Aghenta |
author_sort |
Cherechi Ndukwe |
title |
LoRa-based communication system for data transfer in microgrids |
title_short |
LoRa-based communication system for data transfer in microgrids |
title_full |
LoRa-based communication system for data transfer in microgrids |
title_fullStr |
LoRa-based communication system for data transfer in microgrids |
title_full_unstemmed |
LoRa-based communication system for data transfer in microgrids |
title_sort |
lora-based communication system for data transfer in microgrids |
publisher |
AIMS Press |
series |
AIMS Electronics and Electrical Engineering |
issn |
2578-1588 |
publishDate |
2020-12-01 |
description |
This paper proposes a LoRa-based wireless communication system for data transfer in microgrids. The proposed system allows connection of multiple sensors to the LoRa transceivers, and enables data collection from various units within a microgrid. The proposed system focuses on communications at the secondary communication level of the microgrid between local controllers of each distributed generation (DG) unit and the microgrid central controller due to the possibility of applying low-bandwidth communication systems at this level. In a proof of concept test bed setup, the data collected by the sensors are sent to the LoRa gateway, which serves as the central monitoring system from which control messages are sent to various microgrid components through their local controllers such as DG units, storage systems and load. In this work, to improve communication security, a private server has been developed using Node-Red instead of cloud servers that are currently used in most Internet-of-Things (IoT) monitoring systems. A range test of the proposed system is carried out to observe the rate of data delivery. It demonstrated over 90% data delivery at 4 km. Finally, a test bed experiment is conducted to validate key features of the proposed system by achieving one-directional data transfer in a grid monitoring system. |
topic |
communication system data transfer internet of things (iot) lora technology microgrids node-red private server |
url |
http://www.aimspress.com/article/10.3934/ElectrEng.2020.3.303?viewType=HTML |
work_keys_str_mv |
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