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EDAS: An Evaluation Prototype for Autonomic Event-Driven Adaptive Security in the Internet of Things

机译:EDAS:物联网中自主事件驱动的自适应安全性的评估原型

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In Internet of Things (IoT), the main driving technologies are considered to be tiny sensory objects. These objects cannot host traditional preventive and detective technologies to provide protection against the increasing threat sophistication. Furthermore, these solutions are limited to analyzing particular contextual information, for instance network information or files, and do not provide holistic context for risk analysis and response. Analyzing a part of a situation may lead to false alarms and later to unnecessary and incorrect configurations. To overcome these concerns, we proposed an event-driven adaptive security (EDAS) model for IoT. EDAS aims to observe security events (changes) generated by various things in the monitored IoT environment, investigates any intentional or unintentional risks associated with the events and adapts to it autonomously. It correlates different events in time and space to reduce any false alarms and provides a mechanism to predict attacks before they are realized. Risks are responded to autonomically by utilizing a runtime adaptation ontology. The mitigation action is chosen after assessing essential information, such as the risk faced, user preferences, device capabilities and service requirements. Thus, it selects an optimal mitigation action in a particular adverse situation. The objective of this paper is to investigate EDAS feasibility and its aptitude as a real-world prototype in a remote patient monitoring context. It details how EDAS can be a practical choice for IoT-eHealth in terms of the security, design and implementation features it offers as compared to traditional security controls. We have explained the prototype’s major components and have highlighted the key technical challenges.
机译:在物联网(IoT)中,主要的驱动技术被认为是微小的感官对象。这些对象无法托管传统的预防和侦探技术,从而无法防御日益增长的威胁。此外,这些解决方案仅限于分析特定的上下文信息,例如网络信息或文件,并且不为风险分析和响应提供整体上下文。分析部分情况可能会导致错误警报,并随后导致不必要和错误的配置。为了克服这些担忧,我们为物联网提出了一种事件驱动的自适应安全性(EDAS)模型。 EDAS旨在观察受监控的物联网环境中各种事物产生的安全事件(变化),调查与该事件相关的任何有意或无意风险,并自动进行调整。它可以将时间和空间上的不同事件关联起来,以减少错误警报,并提供一种在攻击发生之前进行预测的机制。风险是通过运行时适应本体自动响应的。在评估基本信息(如面临的风险,用户偏好,设备功能和服务要求)之后,选择缓解措施。因此,它在特定的不利情况下选择最佳的缓解措施。本文的目的是研究EDAS的可行性及其在远程患者监护环境中作为真实世界原型的能力。从它提供的安全性,设计和实现功能方面,与传统的安全控制相比,它详细介绍了EDAS如何成为IoT-eHealth的实际选择。我们已经解释了原型的主要组成部分,并强调了关键的技术挑战。

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