Visible to the public Efficient Conversion Scheme Of Access Matrix In CP-ABE With Double Revocation Capability

TitleEfficient Conversion Scheme Of Access Matrix In CP-ABE With Double Revocation Capability
Publication TypeConference Paper
Year of Publication2020
AuthorsChen, Yingquan, Wang, Yong
Conference Name2020 IEEE International Conference on Progress in Informatics and Computing (PIC)
Date Publisheddec
KeywordsAuthorization, Cauchy matrix, Chinese remainder theorem, cloud computing, Conferences, CP-ABE, data privacy, Encryption, Informatics, policy-based governance, pubcrawl, revocation, Scalability
AbstractTo achieve a fine-grained access control function and guarantee the data confidentiality in the cloud storage environment, ciphertext policy attribute-based encryption (CP-ABE) has been widely implemented. However, due to the high computation and communication overhead, the nature of CP-ABE mechanism makes it difficult to be adopted in resource constrained terminals. Furthermore, the way of realizing varying levels of undo operations remains a problem. To this end, the access matrix that satisfies linear secret sharing scheme (LSSS) was optimized with Cauchy matrix, and then a user-level revocation scheme based on Chinese Remainder Theorem was proposed. Additionally, the attribute level revocation scheme which is based on the method of key encrypt key (KEK) and can help to reduce the storage overhead has also been improved.
DOI10.1109/PIC50277.2020.9350781
Citation Keychen_efficient_2020