Directly revocable Attribute Based Encryption scheme under Ciphertext-policy
Humera Aqeel, Syed Taqi Ali
Abstract
Humera Aqeel, Syed Taqi Ali
Abstract
Attribute-Based Encryption(ABE) came up as an significant cryptographic tool to envision secure fine-grained data sharing and access control. In this paper, we elaborate ABE to more expressive Ciphertext-policy Attribute-Based Encryption(CP-ABE) in consideration with Revocation which is a major issue to achieve in ABE. Specifically, we use direct revocation ABE which permits the trusted authority to revoke users by simply updating revocation list, without interacting with the non-revoked users which is not likely with respect to indirectly revocable ABE. We give a concrete construction and provides certain comparison parameters in order to determine efficiency of our scheme over other existing scheme.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Attribute-Based Encryption(ABE) came up as an significant cryptographic tool to envision secure fine-grained data sharing and access control. In this paper, we elaborate ABE to more expressive Ciphertext-policy Attribute-Based Encryption(CP-ABE) in consideration with Revocation which is a major issue to achieve in ABE. Specifically, we use direct revocation ABE which permits the trusted authority to revoke users by simply updating revocation list, without interacting with the non-revoked users which is not likely with respect to indirectly revocable ABE. We give a concrete construction and provides certain comparison parameters in order to determine efficiency of our scheme over other existing scheme.
Key concepts: Revocation, Attribute-based encryption, Computer science, Ciphertext, Encryption, Computer security, Scheme (mathematics), Access control