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Privacy-Preserving Auction for Big Data Trading Using Homomorphic Encryption

机译:使用均匀加密的大数据交易保留拍卖

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摘要

Cyber-Physical Systems (smart grid, smart transportation, smart cities, etc.), driven by advances in Internet of Things (IoT) technologies, will provide the infrastructure and integration of smart applications to accelerate the generation and collection of big data to an unprecedented scale. As a fundamental commodity in our current information age, big data is a crucial key to competitiveness in modern commerce. In this paper, we address the issue of privacy preservation for data auction in CPS by leveraging the concept of homomorphic cryptography and secure network protocol design. Specifically, we propose a generic Privacy-Preserving Auction Scheme (PPAS), in which the two independent entities of Auctioneer and Intermediate Platform comprise an untrusted third-party trading platform. Via the implementation of homomorphic encryption and one-time pad, a winner in the auction process can be determined and all bidding information is disguised. Yet, to further improve the security of the privacy-preserving auction, we additionally propose an Enhanced Privacy-Preserving Auction Scheme (EPPAS) that leverages an additional signature verification mechanism. The feasibilities of both schemes are validated through detailed theoretical analyses and extensive performance evaluations, including assessment of the resilience to attacks. In addition, we discuss some open issues and extensions relevant to our scheme.
机译:通过互联网(物联网)技术的进步驱动的网络物理系统(智能电网,智能交通,智能城市等)将提供智能应用的基础设施和集成,以加速生成和集合大数据前所未有的规模。作为当前信息时代的基本商品,大数据是现代商业竞争力的关键。在本文中,我们通过利用同性恋密码学和安全网络协议设计的概念来解决CPS中数据拍卖的隐私保存问题。具体地,我们提出了一种通用的隐私保留拍卖方案(PPA),其中拍卖人和中间平台的两个独立实体包括不可信任的第三方交易平台。通过实现同性恋加密和一次性焊盘,可以确定拍卖过程中的获胜者,并且伪造所有竞标信息。然而,为了进一步提高隐私保留拍卖的安全性,我们还提出了增强的隐私保留拍卖计划(EPPA),利用了额外的签名验证机制。通过详细的理论分析和广泛的绩效评估,包括对攻击的恢复性的评估,验证了两种方案的可行性。此外,我们讨论了与我们的计划相关的一些开放问题和扩展。

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