LAS-SG: An Elliptic Curve-Based Lightweight Authentication Scheme for Smart Grid Environments
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Date
2023Author
Chaudhry, Shehzad AshrafYahya, Khalid O. Moh.
Garg, Sahil
Kaddoum, Georges
Hassan, Mohammad Mehedi
Zikria, Yousaf Bin
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The communication among smart meters
(SMs) and neighborhood area network (NAN) gateways is
a fundamental requisite for managing the energy consumption at the consumer site. The bidirectional communication
among SMs and NANs over the insecure public channel
is vulnerable to impersonation, SM traceability, and SM
physical capturing attacks. Many existing schemes’ insecurities and/or inefficiencies call for an efficient and secure
authentication scheme for smart grid infrastructure. In this
article, we present a privacy preserving and lightweight authentication scheme for smart grid (LAS-SG) using elliptic
curve cryptography. The proposed LAS-SG is proved as
secure under the standard model. Moreover, the efficiency
of the LAS-SG is extracted through a real-time experiment,
which attests that proposed LAS-SG completes a round of
authentication in 20.331 ms by exchanging only two messages and 192 B. Due to the adequate efficiency and ample
security, the proposed LAS-SG is more appropriate for SG
environments.
Volume
19Issue
2Collections
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