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An efficient lattice-based identity-based proxy Re-encryption scheme with direct revocation for cloud storage
Juanjuan Li1, Mingming Jiang1, Yuyan Guo1
1School of Computer Science and Technology, Huaibei Normal University, Huaibei, China.
Plos One
|August 12, 2026
Summary
We introduce a new secure data sharing method using identity-based directly revocable proxy re-encryption (IBPRE-DR). This quantum-resistant scheme allows direct user revocation without a key center, enhancing cloud data security.
Area of Science:
- Cryptography
- Cloud Security
- Data Privacy
Background:
- Secure cloud data sharing and user revocation are critical due to increasing data volume and sharing.
- Existing proxy re-encryption (PRE) and identity-based encryption (IBE) schemes often rely on bilinear pairings vulnerable to quantum attacks and lack efficient revocation.
- There is a need for robust, quantum-resistant solutions with dynamic access control and efficient revocation.
Purpose of the Study:
- To propose a novel identity-based directly revocable proxy re-encryption (IBPRE-DR) scheme.
- To address the limitations of existing schemes, including quantum vulnerability and inefficient revocation.
- To enhance secure data sharing in cloud environments with dynamic access control.
Main Methods:
- Developed an IBPRE-DR scheme based on the Learning With Errors (LWE) assumption, a lattice-based cryptographic approach.
- Implemented a complete subtree algorithm for efficient and direct user revocation.
- Incorporated a dual-key mechanism to differentiate re-encryption and decryption keys, preventing collusion.
Main Results:
- The proposed IBPRE-DR scheme provides direct and dynamic user revocation without relying on a key generation center (KGC).
- The scheme is resistant to quantum threats due to its LWE-based foundation.
- It effectively mitigates collusion attacks through a dual-key mechanism and supports multi-bit encryption with fixed private key lengths.
Conclusions:
- This work presents the first lattice-based identity-based proxy re-encryption scheme with direct user revocation under the LWE assumption.
- The IBPRE-DR scheme offers enhanced security, efficient revocation, and quantum resistance for cloud data sharing.
- Both theoretical analysis and experimental results validate the scheme's effectiveness and feasibility.
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