Open AccessJournal Article
Public Key Encryption without using Certificate based on Identity Based Cryptography
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TL;DR: An algorithm is proposed that uses the Identity Based Cryptosystem and its applications in various fields and helps to avoid the trust problems encountered in traditional certificate based PKI.
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Abstract: It has been proven for many years that security for digital information can be attained by the cryptography techniques. Identity based cryptography (IBC) is an emerging area in cryptography schema. Identity based cryptography is the new system which reduces the key management process in traditional public key infrastructures (PKI). The main drawbacks of the traditional Public key cryptosystems (PKC) are use of very long keys, the high cost of the infrastructure and the difficulty in managing multiple parties involved in the process. In PKC digital certificates are used to connect an identity of a person or a machine to a public key. IBC is the extension of public key crypto system. The public keys of IBC system created from any arbitrary unique information like identities, or strings derived from their identities. Any public information such as the e-mail address, name, phone numbers, etc., can be used as a public key. The algorithm for IBC resolves the problem of getting the public key of a user and checking the validity of certificate and helps to avoid the trust problems encountered in traditional certificate based PKI. Two users can communicate in secured manner without the need for exchanging of public or private keys and without keeping any key directories to store the public keys. In this paper we are proposing an algorithm that uses the Identity Based Cryptosystem and its applications in various fields.
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Citations
Two Party Generation of SM9 Digital Signature
Wenlan Ye,Yihong Long +1 more
- 28 Oct 2020
TL;DR: Wang et al. as discussed by the authors proposed three schemes of two party generation of SM9 digital signature, which can ensure the security of user's private key by secret sharing between an end device and a dedicated cryptographic service system which runs in a computer or server.
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•Journal Article
Enhancing the Security of Instant Messaging System using Identity Based Cryptosystems
TL;DR: A new algorithm based on Identity Based Cryptosystems (IBC) is used which can provide strong authentication, confidentiality, integrity and non-repudiation among users of Instant Messengers and thus enhances the security of existing IMs.
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References
Identity-Based Encryption from the Weil Pairing
Dan Boneh,Matthew K. Franklin +1 more
- 19 Aug 2001
TL;DR: This work proposes a fully functional identity-based encryption scheme (IBE) based on the Weil pairing that has chosen ciphertext security in the random oracle model assuming an elliptic curve variant of the computational Diffie-Hellman problem.
Identity-based cryptosystems and signature schemes
Adi Shamir
- 23 Aug 1985
TL;DR: In this article, the authors introduce a novel type of cryptographic scheme, which enables any pair of users to communicate securely and to verify each other's signatures without exchanging private or public keys, without keeping key directories, and without using the services of a third party.
Identity-Based Encryption from the Weil Pairing
Dan Boneh,Matthew K. Franklin +1 more
TL;DR: This work proposes a fully functional identity-based encryption (IBE) scheme based on bilinear maps between groups and gives precise definitions for secure IBE schemes and gives several applications for such systems.
An Identity Based Encryption Scheme Based on Quadratic Residues
TL;DR: A novel public key cryptosystem in which the public key of a subscriber can be chosen to be a publicly known value, such as his identity, which is related to the difficulty of solving the quadratic residuosity problem.
•Posted Content
Secure Identity Based Encryption Without Random Oracles.
Dan Boneh,Xavier Boyen +1 more
TL;DR: This work presents a fully secure Identity Based Encryption scheme whose proof of security does not rely on the random oracle heuristic and is based on the Decision Bilinear Diffie-Hellman assumption.