Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network
The Smart Grid (SG) is a system with a lot of controls and communications. Both local and global controls are included in these controls. One of the advantages of SG over a traditional utility grid is that it uses a two-way communication mechanism at each stage. However, challenges such as complexit...
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my.um.eprints.418972023-10-23T08:48:49Z http://eprints.um.edu.my/41897/ Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network Bhavani, N. P. G. Kumar, Ravi Panigrahi, Bhawani Sankar Balasubramanian, Kishore Arunsundar, B. Abdul-Samad, Zulkiflee Singh, Abha TK Electrical engineering. Electronics Nuclear engineering The Smart Grid (SG) is a system with a lot of controls and communications. Both local and global controls are included in these controls. One of the advantages of SG over a traditional utility grid is that it uses a two-way communication mechanism at each stage. However, challenges such as complexity, data gathering and administration, and so on are brought into the SG system as a result of this two-way communication. As a result, an SG needs connectivity, automation and device tracking. The Internet of Things is used to do this (IoT). This study presents an IoT-enabled smart grid monitoring and control system in a computer network. Here the IoT module has been used in monitoring the network which is integrated with (MLDRNN). Renewable (DER) should be combined in grids to make electricity supply more reliable and reduce transmission losses. The control system of smart grid has been enhanced using (CPCS). The suggested system is scalable, modular, and allows for the interoperability of various types of inverters, as well as data transmission over a secure communication channel. All of these characteristics, combined with its low cost, make the created control system and monitoring platform ideal for monitoring smart microgrids online. The experimental results show scalability, QoS, power consumption, efficiency of the network. Elsevier 2022-09 Article PeerReviewed Bhavani, N. P. G. and Kumar, Ravi and Panigrahi, Bhawani Sankar and Balasubramanian, Kishore and Arunsundar, B. and Abdul-Samad, Zulkiflee and Singh, Abha (2022) Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network. Sustainable Computing-Informatics & Systems, 35. ISSN 2210-5379, DOI https://doi.org/10.1016/j.suscom.2022.100769 <https://doi.org/10.1016/j.suscom.2022.100769>. 10.1016/j.suscom.2022.100769 |
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TK Electrical engineering. Electronics Nuclear engineering Bhavani, N. P. G. Kumar, Ravi Panigrahi, Bhawani Sankar Balasubramanian, Kishore Arunsundar, B. Abdul-Samad, Zulkiflee Singh, Abha Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
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The Smart Grid (SG) is a system with a lot of controls and communications. Both local and global controls are included in these controls. One of the advantages of SG over a traditional utility grid is that it uses a two-way communication mechanism at each stage. However, challenges such as complexity, data gathering and administration, and so on are brought into the SG system as a result of this two-way communication. As a result, an SG needs connectivity, automation and device tracking. The Internet of Things is used to do this (IoT). This study presents an IoT-enabled smart grid monitoring and control system in a computer network. Here the IoT module has been used in monitoring the network which is integrated with (MLDRNN). Renewable (DER) should be combined in grids to make electricity supply more reliable and reduce transmission losses. The control system of smart grid has been enhanced using (CPCS). The suggested system is scalable, modular, and allows for the interoperability of various types of inverters, as well as data transmission over a secure communication channel. All of these characteristics, combined with its low cost, make the created control system and monitoring platform ideal for monitoring smart microgrids online. The experimental results show scalability, QoS, power consumption, efficiency of the network. |
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Article |
author |
Bhavani, N. P. G. Kumar, Ravi Panigrahi, Bhawani Sankar Balasubramanian, Kishore Arunsundar, B. Abdul-Samad, Zulkiflee Singh, Abha |
author_facet |
Bhavani, N. P. G. Kumar, Ravi Panigrahi, Bhawani Sankar Balasubramanian, Kishore Arunsundar, B. Abdul-Samad, Zulkiflee Singh, Abha |
author_sort |
Bhavani, N. P. G. |
title |
Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
title_short |
Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
title_full |
Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
title_fullStr |
Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
title_full_unstemmed |
Design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
title_sort |
design and implementation of iot integrated monitoring and control system of renewable energy in smart grid for sustainable computing network |
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Elsevier |
publishDate |
2022 |
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http://eprints.um.edu.my/41897/ |
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1781704569311461376 |
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13.211869 |