Fuzzy Identity Based Encryption with a flexible threshold value
Publish place: Journal of Communication Engineering، Vol: 10، Issue: 2
Publish Year: 1400
Type: Journal paper
Language: English
View: 86
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Document National Code:
JR_JCESH-10-2_001
Index date: 26 February 2024
Fuzzy Identity Based Encryption with a flexible threshold value abstract
In recent years, the problem of online data and information security has been increasingly serious and prevalent. Security issues are resolved via cryptography. Access control over the encrypted messages is necessary for some applications, therefore message encryption cannot simply achieve the stated aims. To achieve these requirements, attribute-based encryption (ABE) is used. This type of encryption provides both security and access structure for the network users simultaneously. Fuzzy Identity-Based Encryption (FIBE) is a special mode of ABE that provides a threshold access structure for the users. This threshold value is set by the authority for users, which is always fixed and cannot be changed. So, the sender (encryptor) will not play a role in determining the threshold value. The mentioned issue exists also in Key Policy Attribute Based Encryption (KP-ABE) schemes. In this paper, we present a FIBE scheme in addition to the authority, the sender also plays a role in determining the threshold value. Thus, the policy will be more flexible than previous FIBE schemes in that the threshold value is selected only by the authority. We can call the proposed scheme a dual-policy ABE. The proposed technique for flexibility of threshold value can be applied in most of exist KP-ABE schemes. We use the (indistinguishable) selective security model for a security proof. The hardness assumption that we use is the modified bilinear decision Diffie-Hellman problem.
Fuzzy Identity Based Encryption with a flexible threshold value Keywords:
Attribute-based encryption (ABE) , Secret Sharing multiplication , Fuzzy Identity-Based Encryption (FIBE) , fine-grained access policy , Threshold value flexibility
Fuzzy Identity Based Encryption with a flexible threshold value authors
Sedigheh Khajouei-Nejad
Department of Engineering,North Tehran Branch,Islamic Azad University,Tehran,Iran
Sam Jabbehdari
Department of Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran
Hamid Haj Seyyed Javadi
Department of Mathematics and Computer Science, Shahed University, Tehran, Iran
Seyed Mohammad Hossein Moattar
Department of Computer Engineering, Mashhad Branch, Islamic Azad University, Mashhad, Iran