ZIRCON:基于零水印的物联网网络数据完整性和安全出处方法

IF 3.8 2区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
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引用次数: 0

摘要

物联网(IoT)正在将互联网和智能设备整合到几乎所有领域,如家庭自动化、电子医疗系统、车载网络、工业控制和军事应用。在这些领域,从多个来源收集并通过多个节点的中间处理进行管理的感知数据被用于决策过程。在这种高度动态的环境中,确保数据完整性和跟踪数据出处是核心要求,因为数据出处是保证数据可信度的重要工具。由于物联网网络中的计算和能源资源有限,满足这些要求具有挑战性。这就需要解决几个难题,如处理开销、安全出处、带宽消耗和存储效率。在本文中,我们提出了基于零水印的物联网数据保护(ZIRCON),这是一种新颖的零水印方法,可在物联网网络中安全传输出处并确保传感器数据的完整性。在 ZIRCON 中,出处信息通过水印存储在防篡改网络数据库中,水印在传输前由源节点生成。我们提供了广泛的安全分析,表明我们的方案能够抵御被动和主动攻击。我们还根据计算时间、能源使用和成本分析等性能指标,将我们的方案与现有方案进行了比较。结果表明,与现有技术相比,ZIRCON 可抵御多种攻击,重量轻,存储效率高,而且能耗和带宽消耗更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ZIRCON: Zero-watermarking-based approach for data integrity and secure provenance in IoT networks

The Internet of Things (IoT) is integrating the Internet and smart devices in almost every domain, such as home automation, e-healthcare systems, vehicular networks, industrial control, and military applications. In these areas, sensory data, which is collected from multiple sources and managed through intermediate processing by multiple nodes, is used for decision-making processes. Ensuring data integrity and keeping track of data provenance are core requirements in such a highly dynamic context, since data provenance is an important tool for the assurance of data trustworthiness. Dealing with such requirements is challenging due to the limited computational and energy resources in IoT networks. This requires addressing several challenges such as processing overhead, secure provenance, bandwidth consumption and storage efficiency. In this paper, we propose Zero-watermarkIng based data pRovenanCe for iOt Networks (ZIRCON), a novel zero-watermarking approach to securely transmit provenance and ensure data integrity of sensor data in an IoT network. In ZIRCON, provenance information is stored in a tamper-proof network database through watermarks, generated at the source node before transmission. We provide an extensive security analysis showing the resilience of our scheme against passive and active attacks. We also compare our scheme with existing works based on performance metrics such as computational time, energy usage, and cost analysis. The results show that ZIRCON is robust against several attacks, lightweight, storage-efficient, and better in energy usage and bandwidth consumption, compared to prior art.

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来源期刊
Journal of Information Security and Applications
Journal of Information Security and Applications Computer Science-Computer Networks and Communications
CiteScore
10.90
自引率
5.40%
发文量
206
审稿时长
56 days
期刊介绍: Journal of Information Security and Applications (JISA) focuses on the original research and practice-driven applications with relevance to information security and applications. JISA provides a common linkage between a vibrant scientific and research community and industry professionals by offering a clear view on modern problems and challenges in information security, as well as identifying promising scientific and "best-practice" solutions. JISA issues offer a balance between original research work and innovative industrial approaches by internationally renowned information security experts and researchers.
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