Trust Trackers for Computation Offloading in Edge-Based IoT Networks

M. Bradbury, Arshad Jhumka, T. Watson
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引用次数: 8

Abstract

Wireless Internet of Things (IoT) devices will be deployed to enable applications such as sensing and actuation. These devices are typically resource-constrained and are unable to perform resource-intensive computations. Therefore, these jobs need to be offloaded to resource-rich nodes at the edge of the IoT network for execution. However, the timeliness and correctness of edge nodes may not be trusted (such as during high network load or attack). In this paper, we look at the applicability of trust for successful offloading. Traditionally, trust is computed at the application level, with suitable mechanisms to adjust for factors such as recency. However, these do not work well in IoT networks due to resource constraints. We propose a novel device called Trust Tracker (denoted by Σ) that provides higher-level applications with up-to-date trust information of the resource-rich nodes. We prove impossibility results regarding computation offloading and show that Σ is necessary and sufficient for correct offloading. We show that, Σ cannot be implemented even in a synchronous network and we compute the probability of offloading to a bad node, which we show to be negligible when a majority of nodes are correct. We perform a small-scale deployment to demonstrate our approach.
基于边缘的物联网网络中计算卸载的信任跟踪器
将部署无线物联网(IoT)设备,以实现传感和驱动等应用。这些设备通常资源受限,无法执行资源密集型计算。因此,这些作业需要卸载到物联网网络边缘资源丰富的节点上执行。但是,边缘节点的时效性和正确性可能不可信(例如在网络高负荷或受到攻击时)。在本文中,我们研究了信任对成功卸载的适用性。传统上,信任是在应用程序级别计算的,并使用适当的机制来调整诸如最近性之类的因素。然而,由于资源限制,这些在物联网网络中不能很好地工作。我们提出了一种新的设备,称为信任跟踪器(由Σ表示),它为高级应用程序提供资源丰富节点的最新信任信息。我们证明了计算卸载的不可能结果,并表明Σ是正确卸载的充分必要条件。我们表明,即使在同步网络中也不能实现Σ,并且我们计算了卸载到坏节点的概率,当大多数节点是正确的时,我们表明该概率可以忽略不计。我们执行一个小规模部署来演示我们的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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