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A lightweight remote user authentication scheme for IoT communication using elliptic curve cryptography
by
Sadhukhan, Dipanwita
, Dasgupta, Mou
, Khan, M. K
, Ray, Sangram
, Biswas, G. P
in
Agreements
/ Authentication
/ Authentication protocols
/ Communication
/ Cryptography
/ Curves
/ Cybersecurity
/ Data exchange
/ Data mining
/ Digital signatures
/ Electronic devices
/ Forgery
/ Internet of Things
/ Privacy
/ Sensors
/ Smart cards
2021
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A lightweight remote user authentication scheme for IoT communication using elliptic curve cryptography
by
Sadhukhan, Dipanwita
, Dasgupta, Mou
, Khan, M. K
, Ray, Sangram
, Biswas, G. P
in
Agreements
/ Authentication
/ Authentication protocols
/ Communication
/ Cryptography
/ Curves
/ Cybersecurity
/ Data exchange
/ Data mining
/ Digital signatures
/ Electronic devices
/ Forgery
/ Internet of Things
/ Privacy
/ Sensors
/ Smart cards
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
A lightweight remote user authentication scheme for IoT communication using elliptic curve cryptography
by
Sadhukhan, Dipanwita
, Dasgupta, Mou
, Khan, M. K
, Ray, Sangram
, Biswas, G. P
in
Agreements
/ Authentication
/ Authentication protocols
/ Communication
/ Cryptography
/ Curves
/ Cybersecurity
/ Data exchange
/ Data mining
/ Digital signatures
/ Electronic devices
/ Forgery
/ Internet of Things
/ Privacy
/ Sensors
/ Smart cards
2021
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A lightweight remote user authentication scheme for IoT communication using elliptic curve cryptography
Journal Article
A lightweight remote user authentication scheme for IoT communication using elliptic curve cryptography
2021
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Overview
Internet of things (IoT) has become a new era of communication technology for performing information exchange. With the immense increment of usage of smart devices, IoT services become more accessible. To perform secure transmission of data between IoT network and remote user, mutual authentication, and session key negotiation play a key role. In this research, we have proposed an ECC-based three-factor remote user authentication scheme that runs in the smart device and preserves privacy, and data confidentiality of the communicating user. To support our claim, multiple cryptographic attacks are analyzed and found that the proposed scheme is not vulnerable to those attacks. Finally, the computation and communication overheads of the proposed scheme are compared with other existing protocols to confirm that the proposed scheme is lightweight. A formal security analysis using AVISPA simulation tool has been done that confirms the proposed scheme is robust against relevant security threats.
Publisher
Springer Nature B.V
Subject
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