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A Construction of Secure and Efficient Lightweight Authenticated Key Agreement Based on Elliptic Curve Cryptography for Smart Grid

Publication Type : Conference Paper

Publisher : Springer Nature Singapore

Source : Lecture Notes in Electrical Engineering

Url : https://doi.org/10.1007/978-981-99-7630-0_14

Campus : Faridabad

School : School of Artificial Intelligence

Year : 2024

Abstract : Smart grids are important in modern smart cities for setting and managing the response demands, for this, they use Information and Communication Technologies. Many kinds of sensors are used in Smart Grid Environment for the surveillance purposes in an area. Their response time is less which is the reason these are deployed in high-tension areas such as power supply lines so that they can pass and share important information to the control center about any flaw, damage, or any emergency message. Usually, these grids face cyberattacks along with physical attacks and damages when they are deployed to high-tension open environment. Therefore, the objective is the requirement of prevention of such attacks so that the smart grids environment can work efficiently for surveillance. The proposed protocol helps to establish an authenticated key exchange. This is useful to communicate over public channel with grids authentication.

Cite this Research Publication : Dharminder Chaudhary, M. S. P. Durgarao, Pasupuleti Gnaneshwar Parikshith, Yarragoti Ravi Theja, A Construction of Secure and Efficient Lightweight Authenticated Key Agreement Based on Elliptic Curve Cryptography for Smart Grid, Lecture Notes in Electrical Engineering, Springer Nature Singapore, 2024, https://doi.org/10.1007/978-981-99-7630-0_14

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