Abstract
With the emergence of the Internet of Things (IoT) and artificial intelligence (AI) technologies as a trending field, learning and scheduling applications in energy grids environment are extending. Herein, the great need is felt for analyzing the applicability of AI-enabled IoT technologies in energy systems in response to the call for smart and autonomous architecture for multicarrier energy grids. Due to this, the current chapter gives an informative description of new AI-based IoT frameworks concentrating on architecture, elements, variables, applications, and also its challenges. At first, an insight into IoT basics is provided that helps readers to go through the next sections. The required infrastructure for deploying the aforementioned technologies is discussed, explaining electronic and IoT components. Energy internet as the IoT in energy grid’s output has tremendous features that are appropriate for the grid’s performance evaluation, which is explained in this chapter. Next, IoT challenges in the smart grid are discussed, which are vital for obtaining a successful energy internet. At the end of this chapter, future research and development potentials are discussed, aiming to provide a suitable overview of future trends.
Original language | English |
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Title of host publication | IoT Enabled Multi-Energy Systems : From Isolated Energy Grids to Modern Interconnected Networks |
Number of pages | 18 |
Publisher | Academic Press |
Publication date | 2023 |
Pages | 69-86 |
ISBN (Print) | 9780323954211 |
DOIs | |
Publication status | Published - 2023 |
Keywords
- Smart grid
- Internet of Things
- Energy Internet
- artificial intelligence
- blockchain
- integrated energy systems