Abstract

Cloud computing plays a major role in sharing data and resources to other devices through data outsourcing. During sharing resources, it is a challenging task to provide access control and secure write operations. The main issue is to provide secure read and write operations collaboratively and to reduce computational overload by effective key management. In this paper, a secure and an efficient data collaboration scheme blowfish hybridized weighted attribute-based Encryption (BH-WABE ) for secure data writing and proficient access control has been proposed. Here, weight is assigned to each attribute based on its importance and data are encrypted using access control policies. The cloud service provider stores the outsourced data and an attribute authority revokes or updates the attributes by assigning different attributes based on the weight. The receiver can access the data file corresponding to its weight in order to reduce the computational overload. The proposed BH-WABE provides collusion resistance, multiauthority security and fine-grained access control in terms of security, reliability, and efficiency. The performance is compared with the conventional hybrid attribute-based encryption (HABE) scheme in terms of data confidentiality, flexible access control, data collaboration, full delegation, partial decryption, verification, and partial signing.

Highlights

  • Attribute-based encryption (ABE) is a popular cryptographic technology to protect the security of users’ data in cloud computing

  • The sharing data in our scheme is encrypted with the blowfish hybridized weighted attribute-based Encryption (BH-WABE) technique, which is secure against a chosen plaintext attack if the decisional bilinear Diffie-Hellman (DBDH) assumption holds

  • An efficient and scalable access control scheme has been proposed in this paper

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Summary

Introduction

Attribute-based encryption (ABE) is a popular cryptographic technology to protect the security of users’ data in cloud computing. By the use of cryptographic secret-sharing, the secured data are transmitted across multiple clouds from which the data can be accessed by attribute-based encryption. The issues like hacking threats, internally or externally, infeasibility of encrypting data For this purpose, the user is permitted for data encryption by employing key-based techniques to provide confidentiality [14,15]. An attribute encryption scheme with more authority is more suitable for data access control cloud storage systems because the user can be held by multiple institutions to manage property, and access to policy data owners to use the property that may be defined in different institutions. We propose a novel data collaboration scheme for secure read and write operations in cloud computing that allows a symmetric encryption algorithm for effective key management to reduce â â computational overhead. We provide a security and performance analysis of our scheme, which shows that our scheme is both secure and highly efficient

Related Works
Hierarchical Attribute-Based Encryption
Proposed
Algorithm Level Operations
System
Discussion
Computation
Comparison
Security Analysis
Collusion Attack
Conclusions
Full Text
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