conference-paper

A Privacy-Preserving Framework for Scalable Data Integrity Verification in Cloud Storage Using Zero-Knowledge Proofs

Research footprint

At a glance

Citations
0
References
8
Comments
0
Paper overview

Abstract

Cloud storage systems have become central to data-driven industries due to their flexibility and scalability. However, ensuring the integrity and confidentiality of outsourced data remains a major concern, particularly in multi-tenant and dynamic cloud environments. This paper proposes a novel privacy-preserving framework that integrates Zero-Knowledge Proofs (ZKP), Pedersen Commitments, and bulk segmentation for efficient and scalable data integrity verification. Unlike traditional approaches, our framework enables Third-Party Auditors (TPAs) to verify cloud-stored data without exposing sensitive information. It is designed to support dynamic operations, detect insider and external threats proactively, and minimize computational overhead through segment-level auditing. Implementation and evaluation using Amazon S3 and DynamoDB demonstrate the framework’s practical viability, low communication cost, and robust tamper detection capabilities.

Record transparency

Publication details

DOI
10.1109/acdsa65407.2025.11165823
OpenAlex
W4414462996
Document type
conference-paper
Language
EN
Last metadata update
Community

Comments

Log in to join the discussion.

  1. No comments yet. Start the discussion.