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Privacy Preserving Data Provenance Model Based on PUF for Secure Internet of Things

机译:基于PUF的安全物联网隐私保护数据源模型

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摘要

Data provenance to maintain data integrity and authenticity is a significant challenge in the Internet of Things (IoT) environments. Additionally, if the provenance metadata itself can be communicated in a privacy-preserving manner, it expands the usage of IoT systems to human societal domains where privacy is of paramount importance. In this paper, we present a scheme to combine data provenance and privacy-preserving solutions. Our scheme merges Physical Unclonable Function (PUF) technology with non-interactive zero-knowledge proof to provide trustworthy and dependable IoT systems. In this context, the IoT device can anonymously send data to the corresponding server associated with the proof of ownership. First, we propose a privacy-preserving data provenance protocol. This protocol was synthesized with Altera Quartus. It was implemented on an Altera Cyclone IV FPGA to demonstrate its practicality and feasibility. Most of the protocol steps take time of the order of 40u sec establishing its practicality.
机译:在物联网(IoT)环境中,维持数据完整性和真实性的数据来​​源是一项重大挑战。此外,如果出处元数据本身可以以保护隐私的方式进行通信,则它将IoT系统的使用范围扩展到隐私至关重要的人类社会领域。在本文中,我们提出了一种将数据来源和隐私保护解决方案相结合的方案。我们的方案将物理不可克隆功能(PUF)技术与非交互式零知识证明相结合,以提供可信赖且可靠的IoT系统。在这种情况下,IoT设备可以将数据匿名发送到与所有权证明关联的相应服务器。首先,我们提出了一种保护隐私的数据来源协议。该协议是用Altera Quartus合成的。它在Altera Cyclone IV FPGA上实现,以证明其实用性和可行性。大多数协议步骤需要40u sec左右的时间才能确定其实用性。

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