基于多属性和主观逻辑的物联网自动信任计算研究

Nuray Baltaci Akhuseyinoglu, Maryam Karimi, Mai Abdelhakim, P. Krishnamurthy
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引用次数: 3

摘要

开发自动化信任机制对于克服使用物联网服务的人们对不确定性和风险的认知至关重要。事物之间的通信越来越多,它们传递的数据的信任取决于几个因素,比如它们用于通信的链接和环境。这表明需要一种“事物”的信任管理方法,该方法考虑到它们之间的通信、环境和安全相关因素以及网络拓扑结构,但不需要人为干预。为了解决这些挑战,我们提出了一个自动计算“事物”信任的信任管理框架。在“物”信任网络中,我们采用多属性决策(MADM)和基于证据的主观逻辑(EBSL)来考虑信任值的不确定性。提出了MADM中非单调属性的新归一化方法。提出了一种自动信任计算算法,并利用合成数据和真实数据集的采样对其有效性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Automated Trust Computation in IoT with Multiple Attributes and Subjective Logic
Developing automated trust mechanisms has become crucial for overcoming perceptions of uncertainty and risk by people using IoT services. Things are increasingly communicating with each other and trust in the data they deliver depends on several factors such as the links they use to communicate and the environment. This points to a need for a trust management method for "things" that considers the communication among them, environmental and security-related factors, and the net-work topology but without human intervention. To address these challenges, we propose a trust management framework that automatically computes the trust of "things". We use Multi-Attribute Decision Making (MADM) and Evidence-Based Subjective Logic (EBSL) in a trust network of "things" to take into account the uncertainty in trust values. We propose new normalization for non-monotonic attributes in MADM. We present an algorithm for automatic trust computation and evaluate its effectiveness using synthetic data and sampling from real datasets.
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