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Journal ArticleDOI

Flexible and Fine-Grained Attribute-Based Data Storage in Cloud Computing

TLDR
This article provides a ciphertext-policy attribute based encryption (CP-ABE) scheme with efficient user revocation for cloud storage system that can withstand collusion attack performed by revoked users cooperating with existing users and proves the security of the scheme under the divisible computation Diffie-Hellman assumption.
Abstract
With the development of cloud computing, outsourcing data to cloud server attracts lots of attentions. To guarantee the security and achieve flexibly fine-grained file access control, attribute based encryption (ABE) was proposed and used in cloud storage system. However, user revocation is the primary issue in ABE schemes. In this article, we provide a ciphertext-policy attribute based encryption (CP-ABE) scheme with efficient user revocation for cloud storage system. The issue of user revocation can be solved efficiently by introducing the concept of user group. When any user leaves, the group manager will update users’ private keys except for those who have been revoked. Additionally, CP-ABE scheme has heavy computation cost, as it grows linearly with the complexity for the access structure. To reduce the computation cost, we outsource high computation load to cloud service providers without leaking file content and secret keys. Notably, our scheme can withstand collusion attack performed by revoked users cooperating with existing users. We prove the security of our scheme under the divisible computation Diffie-Hellman assumption. The result of our experiment shows computation cost for local devices is relatively low and can be constant. Our scheme is suitable for resource constrained devices.

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Citations
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Journal ArticleDOI

Public Integrity Auditing of Shared Encrypted Data within Cloud Storage Group

TL;DR: This work utilizes the technique of homomorphic hash function to implement reencryption ciphertext blocks and introduces a certificateless signature scheme for the integrity verification of encrypted data shared within a group and gives the theoretical and experimental performance analysis of the scheme.
Journal ArticleDOI

Design of a Secure Encryption Model (SEM) for Cloud Data Storage Using Hadamard Transforms

TL;DR: The SEM model presented is a flexible model that encrypts the data at multiple levels, starting from a secure user authentication, which increases the security substantially and satisfies the avalanche effect property, which is a desirable property of an encryption algorithm.
Book ChapterDOI

An Efficient Revocable Attribute-Based Signcryption Scheme with Outsourced Designcryption in Cloud Computing

TL;DR: The proposed scheme achieves the efficient attribute revocation through delegating the cloud server to update ciphertext without decrypting it, and outsource massive decryption operations to the proxy server so that computation cost on user’s devices is small and constant.
Journal ArticleDOI

A Practical Framework for Secure Document Retrieval in Encrypted Cloud File Systems

TL;DR: In this paper , a new encrypted document retrieval system is designed and a proxy server is integrated into the system to alleviate data owner's workload and improve the whole system's security level.
Proceedings ArticleDOI

PRShare: A Framework for Privacy-Preserving, Interorganizational Data Sharing

TL;DR: This work proposes a system architecture and a suite of protocols that facilitate dynamic, efficient, and privacy-preserving interorganizational data sharing, while allowing each party to use its own set of proprietary attributes.
References
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Journal ArticleDOI

Identity-Based Encryption from the Weil Pairing

TL;DR: This work proposes a fully functional identity-based encryption (IBE) scheme based on bilinear maps between groups and gives precise definitions for secure IBE schemes and gives several applications for such systems.
Proceedings ArticleDOI

Ciphertext-Policy Attribute-Based Encryption

TL;DR: A system for realizing complex access control on encrypted data that is conceptually closer to traditional access control methods such as role-based access control (RBAC) and secure against collusion attacks is presented.
Proceedings ArticleDOI

Attribute-based encryption for fine-grained access control of encrypted data

TL;DR: This work develops a new cryptosystem for fine-grained sharing of encrypted data that is compatible with Hierarchical Identity-Based Encryption (HIBE), and demonstrates the applicability of the construction to sharing of audit-log information and broadcast encryption.
Book ChapterDOI

Fuzzy identity-based encryption

TL;DR: In this article, a new type of identity-based encryption called Fuzzy Identity-Based Encryption (IBE) was introduced, where an identity is viewed as set of descriptive attributes, and a private key for an identity can decrypt a ciphertext encrypted with an identity if and only if the identities are close to each other as measured by the set overlap distance metric.
Posted Content

Fuzzy Identity Based Encryption.

TL;DR: In this paper, a new type of identity-based encryption called Fuzzy Identity-Based Encryption (IBE) was introduced, where an identity is viewed as set of descriptive attributes, and a private key for an identity can decrypt a ciphertext encrypted with an identity if and only if the identities are close to each other as measured by the set overlap distance metric.
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