An efficient shuffle padding elliptic curve cryptography based key aggregation used in smart grid
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Abstract
The emergence of cloud computing offers a better way to solve high
newlinecost effectiveness and reliability. The potential of cloud computing in smart
newlinegrid construction is analysed, and cloud computing is extended to cloud client
newlinecomputing. A smart grid is a new generation of standardized grids.
newlineCommunication infrastructure is vital to the successful operation of modern
newlinesmart grids. Application of communication technologies ensures low energy
newlineconsumption, improves smart grid functionality, and integrates all smart grid
newlinecomponents from generation to end users. The Smart Grid (SG) is the standard
newlinefor power distribution solutions. A relevant feature of the smart grid is helping
newlineto monitor consumer behaviour and the grid system. However, the delay
newlinesensitive network faces numerous challenges in which security and privacy
newlinegain more attention. Threats to transmitted messages, control over smart grid
newlineinformation, and user privacy are a major smart grid security concerns.
newlineEncryption improves security and provides stable power for an
newlineuninterrupted energy supply. The first method propose a enhanced Elliptic
newlineCurve Cryptography (ECC) in smart grid to protects the transmission of keys
newlinebetween two communicating source to destination and also provides a state-of
newlinethe-art solution for data encryption. It smartly uses the power demand data sent
newlinefrom any master node to the main central system to fully satisfy all grid node
newlinepower demands and achieve excellent results. ECC can provide protected and
newlinesecure data communication. ECC provides secure communication between
newlineservice providers and users to solve security issues. And ECC is an efficient
newlinemutual authentication and key agreement protocol against security threats for
newlinesmart grid communication using elliptic curve encryption.
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