Enhancing Security in Internet of Things (IoT) Architecture through Defense-in-Depth Mechanism: A Comprehensive Study

Chika Lilian Onyagu, Okonkwo Obikwelu, Akawuku I. Godspower, Joshua John
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Abstract

The Internet of Things (IoT) has revolutionized various domains, offering connectivity and data sharing among diverse devices and services. However, this interconnectedness poses significant security challenges, primarily centered around confidentiality, integrity, and availability. This paper investigates the security issues embedded in the layers of IoT architecture, ranging from the perception layer to the application layer. By leveraging the Defense-in-Depth security mechanism, we propose a comprehensive approach to fortify IoT systems against cyber threats. The Defense-in-Depth strategy is illustrated through a layered model, addressing security concerns at the perimeter, host, OS/application, and data layers. The study explores various security measures applicable to each layer, emphasizing the need for a multi-faceted approach to ensure the robustness of IoT security. Keywords: Internet of Things (IoT), Security Issues, Defense-in-Depth Mechanism, Perception Layer, Network Layer, Data Processing Layer, Application Layer, Confidentiality, Integrity, Availability
通过深度防御机制增强物联网(IoT)架构的安全性:综合研究
物联网(IoT)给各个领域带来了革命性的变化,在各种设备和服务之间实现了连接和数据共享。然而,这种互联性带来了重大的安全挑战,主要集中在保密性、完整性和可用性方面。本文研究了物联网架构各层(从感知层到应用层)中蕴含的安全问题。通过利用 "深度防御"(Defense-in-Depth)安全机制,我们提出了一种全面的方法来加固物联网系统,使其免受网络威胁。深入防御战略通过分层模型加以说明,解决了周边层、主机层、操作系统/应用层和数据层的安全问题。本研究探讨了适用于各层的各种安全措施,强调了采用多层面方法确保物联网安全稳健性的必要性。关键词物联网(IoT)、安全问题、深度防御机制、感知层、网络层、数据处理层、应用层、保密性、完整性、可用性
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