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EPF-CLPA: An Efficient Pairing-Free Certificateless Public Auditing for Cloud-based CPS

机译:EPF-CLPA:基于云的CPS一个有效的免费无证公共审计

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Cloud based cyber physical system (CPS) enables individuals to store and share data collected from both cyberspace and the physical world. This leads to the proliferation of massive data at a user's local site. Since local storage systems can't store and maintain huge data, it is a wise and practical way to outsource such huge data to the cloud. Cloud storage provides scalable storage space to manage data economically and flexibly. However, the integrity of outsourced data is a critical challenge because user's lose control of their data once it's transferred to cloud servers. Several auditing schemes have been put forward based on public key infrastructure (PKI) or identity-based cryptography to verify data integrity. However, “the PKI-based schemes suffer from certificate management problem and identity-based schemes face the key escrow” problem. Therefore, to address these problems, certificateless public auditing schemes have been introduced on the basis of bilinear pairing, which incur high computation overhead, and thus it is not suitable for CPS. To reduce the computation overhead, in this paper, Using elliptic curve cryptography, we propose an efficient pairing-free certificateless public auditing scheme for cloud-based CPS. The proposed scheme is more secure against type I/II/III adversaries and efficient compared to other certificateless based schemes.
机译:基于云的网络物理系统(CPS)使个人能够存储和共享从网络空间和物理世界收集的数据。这导致了用户本地站点的大规模数据的扩散。由于本地存储系统无法存储和维护巨大数据,因此将如此庞大的数据外包给云是一种明智和实用的方法。云存储提供可扩展的存储空间来管理数据经济和灵活性。但是,外包数据的完整性是一个关键挑战,因为在它转移到云服务器时,用户会失去对数据的控制。基于公钥基础架构(PKI)或基于身份的密码学,以验证数据完整性的几种审计计划。但是,“基于PKI的方案遭受证书管理问题,并且基于身份的方案面临着关键托管”问题。因此,为了解决这些问题,已经在Bilinear配对的基础上引入了无可证明的公共审计计划,这产生了高计算开销,因此它不适合CPS。为了减少计算开销,本文使用椭圆曲线加密,我们为基于云的CP提出了一种有效的免费无证公共审计计划。与其他基于无证书的计划相比,拟议的计划对I / II / III型对手和有效更为安全。

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