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Title Blockchain And Ai Powered Smart Grids A Secure And Efficient Energy Management Framework
ID_Doc 12353
Authors Adhau S.P.; Rajesh Kumar T.; Kalpana V.; Sowmya V.J.; Suguna M.; Jebakumar Immanuel D.
Year 2025
Published Journal of Machine and Computing, 5, 3
DOI http://dx.doi.org/10.53759/7669/jmc202505125
Abstract The monetary gain from an advanced and intelligent electricity substructure that can manage increasing demand is known as a smart grid (SG). Being eco-conscious and conserving energy are key factors. An increase in energy consumption due to both population growth and technological advancements has created serious issues with both environmental sustainability and energy reliability. Applying AI and blockchain technologies to address issues with power control is crucial and noteworthy. Pre-processing data and smart city data with Z-Score normalisation technique to construct power-consumption smart grid. Assign Blockchain technology (a unique method of smartly and securely exchanging and storing order information using the Distributed DAA (Authentication & Authorisation) protocol at a centralized / distributed cloud platform) so as to not only ensure accuracy in data Consistency, but also maintain the confidentiality aspects for a large number of sensitive data an as the use of Distributed DAA (Authentication & Authorisation) protocol will provide confidence in grid applicants. It also combines local feature extraction and global modelling capability that produces an accurate load prediction when CSAM and MSAB are plugged into a Hybrid Attention UNet (named as CMSAMB-UNet) Maybe the smart network can retain the eventual results. An example of a successful user-to-grid communication system is blockchain-based smart energy trading, which allows for real-time demand response and the rapid balancing of electrical load and supply. Last but not least, compared to the current methods, our proposed solution works far better. ©2025 The Authors.
Author Keywords Artificial Intelligence; Channel Besides Spatial Attention Module; Distributed Authentication and Authorization; Multi-Head Self-Attention Block; Power Consumption; Smart Grid


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