Abstract

Cloud storage services allow users to outsource their data remotely to save their local storage space and enable them to manage resources on demand. However, once users outsourced their data to the remote cloud platform, they lose the physical control of the data. How to ensure the integrity of outsourced data is the major concern of cloud users and also is the main challenge in the cloud service deployment. Limited by the communication and computation overheads, traditional hash-based integrity verification solutions in the stand-alone systems cannot be directly adopted in remote cloud storing environment. In this paper, we improve the previous privacy preserving model and propose an effective integrity verification scheme of cloud data based on BLS signature (EoCo), which ensures public audition and data privacy preserving. In addition, EoCo also supports batch auditing operations. We conducted theoretical analysis of our scheme, demonstrated its correctness and security properties, and evaluated the system performance as well.

Highlights

  • Recent years, cloud storage services are getting more and more popular, which allow users to outsource their data remotely to save their local storage space and enable them to manage resources on demand

  • Once users outsourced the data to the remote cloud platform, they lose the physical control of their data

  • Being limited by the communication and computation overheads, traditional hash-based integrity verification solutions for stand-alone systems cannot be directly adopted in remote cloud storing environments

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Summary

Introduction

Cloud storage services are getting more and more popular, which allow users to outsource their data remotely to save their local storage space and enable them to manage resources on demand. To verify the integrity of cloud data without retrieving the whole outsourced files, Ateniese et al [3] proposed a provable data possession (PDP) scheme, which provides remote integrity verification based on homomorphic tag and sampling techniques. Their improved approach supports public audition but cannot ensure the privacy preserving property.

Related Works
Preliminaries
Approach Overview
Generate q different files
Calculate:
Our Schemes
Scheme Analysis
Evaluation
Conclusion
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