DocumentCode :
2158043
Title :
An efficient signcryption scheme based on ECC with forward secrecy and encrypted message authentication
Author :
Dutta, Maitreyee ; Singh, A.K. ; Kumar, Ajit
Author_Institution :
Dept. of Comput. Sci., N.I.T.T.T.R., Chandigarh, India
fYear :
2013
fDate :
22-23 Feb. 2013
Firstpage :
399
Lastpage :
403
Abstract :
In this paper, an efficient signcryption scheme based on elliptic curve cryptosystem is going to be proposed which can effectively combine the functionalities of digital signature and encryption and also takes a comparable amount of computational cost and communication overhead. The proposed scheme provides confidentiality, integrity, unforgeability and nonrepudiation, along with encrypted message authentication, forward secrecy of message confidentiality and public verification. By forward secrecy of message confidentiality function we mean, although the private key of the sender is divulged inattentively, it does not affect the confidentiality of the previously stored messages. By the public verification function we mean, any third party can verify directly the signature of the sender of the original message without the sender´s private key when dispute occurs. It enhances the justice of judge. In addition, proposed scheme will save great amount of computational cost. The proposed scheme can be applied to the lower computational power devices, like smart card based applications, e-voting and many more, due to their lower computational cost. The Proposed Scheme is discussed in this paper and is compared with the existing schemes with respect to computational cost and the security functions it provides.
Keywords :
digital signatures; public key cryptography; ECC; communication overhead; computational cost; computational power devices; digital signature; e-voting; elliptic curve cryptosystem; forward secrecy; integrity; message authentication encryption; message confidentiality; nonrepudiation; public verification function; signcryption scheme; smart card based applications; unforgeability; Computational efficiency; Elliptic curve cryptography; Elliptic curves; Encryption; Digital Signature; Elliptic curve cryptography; Encrypted Message Authentication; Forward secrecy; Public Verifiability; Public key cryptography; Signcryption;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advance Computing Conference (IACC), 2013 IEEE 3rd International
Conference_Location :
Ghaziabad
Print_ISBN :
978-1-4673-4527-9
Type :
conf
DOI :
10.1109/IAdCC.2013.6514258
Filename :
6514258
Link To Document :
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