Homomorphic Authenticable Ring Signature Mechanism for Public Auditing on Shared Data in the Cloud

G. D. Patwardhan, B. W. Balkhande
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引用次数: 2

Abstract

: Cloud computing is the long dreamed vision of computing as a utility, where users can remotely store their data into the cloud so as to enjoy the on-demand high quality applications and services from a shared pool of configurable computing resources. By data outsourcing, users can be relieved from the burden of local data storage and maintenance. Thus, enabling public auditability for cloud data storage security is of critical importance so that users can resort to an external audit party to check the integrity of outsourced data when needed. To securely introduce an effective third party auditor (TPA), the following two fundamental requirements have to be met: 1) TPA should be able to efficiently audit the cloud data storage without demanding the local copy of data, and introduce no additional on-line burden to the cloud user. Specifically, our contribution in this work can be summarized as the following three aspects: the best of our knowledge, our is the to support scalable and Cloud Computing. In particular, our scheme achieves batch auditing multiple delegated auditing tasks from different users can be performed simultaneously by the TPA.
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云共享数据公共审计的同态可认证环签名机制
云计算是将计算作为一种实用工具的长期梦想,用户可以将其数据远程存储到云中,以便从共享的可配置计算资源池中享受按需高质量的应用程序和服务。通过数据外包,可以减轻用户在本地存储和维护数据的负担。因此,启用云数据存储安全的公共可审计性至关重要,这样用户就可以在需要时求助于外部审计方来检查外包数据的完整性。为了安全地引入一个有效的第三方审计员(TPA),必须满足以下两个基本要求:1)TPA应该能够有效地审计云数据存储,而不需要数据的本地副本,并且不会给云用户带来额外的在线负担。具体来说,我们在这项工作中的贡献可以概括为以下三个方面:我们的知识,我们的是支持可扩展和云计算。特别是,我们的方案实现了批量审计,多个来自不同用户的委托审计任务可以由TPA同时执行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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