Certificateless two-party authenticated key agreement protocol based on bilinear pairings
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Certificateless public key cryptography has appealing features,namely it does not require the use of certificates and does not have a private key escrow feature.This paper describes a certificateless key agreement protocol based on bilinear pairings.The identity authentication in the protocol depends on a digital signature scheme.This paper proves the security of the signature scheme.The results show that in the random oracle model with the discrete logarithm assumption,the signature scheme resists existential forgeries against adaptive chosen-message attacks.The results farther show that the protocol preserves the desired security properties,including known-key security,unknown key-share resilience,perfect forward secrecy,key-compromise impersonation resilience and leakage of ephemeral private key resilience.The protocol requires much lower computation overhead than related protocols,since it uses fewer bilinear pairing operations and no modular exponentiation.