TARU PUBLICATIONS
Journal of Discrete Mathematical Sciences and Cryptography cover
Hybrid ·Peer-reviewed·ISSN (Online): 2169-0065·ISSN (Print): 0972-0529

Monthly Journal: Publishes theoretical and applied research in all areas of Discrete Mathematical Sciences, Cryptography, Combinatorics, Elliptic Curves and Information Security.

Issues up to 2022 co-published with and available at:Taylor & Francis Online
submissions@tarupublications.com
Open Access Research Article

CR-IBE based data sharing and revocation in the cloud

* ,

* Corresponding author · click or hover a name for details

pp. 453–464Vol. 27Issue 2-AMarch 2024DOI: 10.47974/JDMSC-1901 Crossmark XML
Published Online:
06 Apr 2024
Article type:
Research Article
Language:
EN
Article no.:
JDMSC-1901
Pages:
453–464

Abstract

Storing information on the cloud lets users access data quickly. Owners send their files to cloud servers to save money and use helpful tools. Keeping shared data online beyond direct control worries more people about privacy and security. Issues with sharing data in the cloud are a major concern. Several methods can protect user privacy and securely share group information. This paper introduces a secure dynamic way for groups to share and take away access to data using identity-based encryption that can change (R-IBE). A new cloud-based method for sharing data with revocable identity-based encryption (CR-IBE) is suggested. It allows stopping user access. The proposed method is compared to existing attribute-based encryption schemes for how long they take to run and decode. Tests show the proposed method provides better protection and privacy.

Keywords

Subject Classifications

Primary 93A30Secondary 49K15

References

[1] G Ravindra Reddy, and A V Vamshi Krishna, “Secure Data Sharing in Cloud Computing Using Revocable-Storage Identity-Based Encryption”, pp.111-118 (2017).
[2] Tran Viet Xuan Phuong and Willy Susilo, “Hidden Ciphertext Policy Attribute-Based Encryption Under Standard Assumptions”, pp.35-45 (2016).
[3] Surya Nepal &Dongxi Liu, “Ciphertext-Delegatable CP-ABE for a Dynamic Credential: A Modular Approach”, pp.3-20 (2019).
[4] S. K. Sharma, A. Chaurasia, V. S. Sharma, C. L. Chowdhary and S. Basheer, “GEMM, a Genetic Engineering-Based Mutual Model for Resource Allocation of Grid Computing,” in IEEE Access, vol. 11, pp. 128537-128548 (2023), doi: 10.1109/ACCESS.2023.3333278.
[5] Muhammad Waqas and ShanshanTu, “A revocable and outsourced multi-authority attribute-based encryption scheme in fog computing” (2021).
[6] J.Wu and T.Wang, “CPDA: A Confidentiality-Preserving Deduplication Cloud Storage With Public Cloud Auditing , pp.160482-160497 (2019).  
[7] Jianfei.S and Hu.X, “Comments on Verifiable and Exculpable Outsourced Attribute-Based Encryption for Access Control in Cloud Computing”, pp. 461-462 (2017). 
[8] Anil Kumar & Sandeep Kumar Sharma. Information cryptography using cellular automata and digital image processing, Journal of Discrete Mathematical Sciences and Cryptography, 25:4, 1105-1111 (2022), DOI: 10.1080/09720529.2022.2072437.
[9] K. Mohanty and K. Sakurai, “A scalable attribute-set-based access control with both sharing and full-fledged delegation of access privileges in cloud computing”, pp. 241-256 (2017).
[10] Sharma, S.K., Kumar, A., Digital Image Transformation Using Outer Totality Cellular Automata. Machine Intelligence Techniques for Data Analysis and Signal Processing. Lecture Notes in Electrical Engineering, vol 997. Springer, Singapore (2023). https://doi.org/10.1007/978-981-99-0085-5_69.
[11] S. Xu and Y. Mu, “A new revocable and re-delegable proxy signature and its application”, pp.380–399 (2018).
[12] Ajani, S. N., Khobragade, P., Dhone, M., Ganguly, B., Shelke, N., & Parati, N., Advancements in Computing: Emerging Trends in Computational Science with Next-Generation Computing. International Journal of Intelligent Systems and Applications in Engineering, 12(7s), 546–559 (2023).
[13] L. Jiang, Guo D, 2 “Dynamic encrypted data sharing scheme based on conditional proxy broadcast re-encryption for cloud storage”, pp. 13336–13345.
[14] X. Huang, and Lou W.,  “New publicly verifiable databases with efficient updates”, pp. 546–556 (2015).

Views: 174Downloads: 60Citations: 0