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物联网的关键网络安全分析与未来研究方向:全面综述。

A Critical Cybersecurity Analysis and Future Research Directions for the Internet of Things: A Comprehensive Review.

机构信息

Management Information System Department, College of Business Administration, Prince Sattam Bin Abdulaziz University, Al-Kharj 16278, Saudi Arabia.

Department of Computer Science, College of Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

出版信息

Sensors (Basel). 2023 Apr 19;23(8):4117. doi: 10.3390/s23084117.

Abstract

The emergence of the Internet of Things (IoT) technology has brought about tremendous possibilities, but at the same time, it has opened up new vulnerabilities and attack vectors that could compromise the confidentiality, integrity, and availability of connected systems. Developing a secure IoT ecosystem is a daunting challenge that requires a systematic and holistic approach to identify and mitigate potential security threats. Cybersecurity research considerations play a critical role in this regard, as they provide the foundation for designing and implementing security measures that can address emerging risks. To achieve a secure IoT ecosystem, scientists and engineers must first define rigorous security specifications that serve as the foundation for developing secure devices, chipsets, and networks. Developing such specifications requires an interdisciplinary approach that involves multiple stakeholders, including cybersecurity experts, network architects, system designers, and domain experts. The primary challenge in IoT security is ensuring the system can defend against both known and unknown attacks. To date, the IoT research community has identified several key security concerns related to the architecture of IoT systems. These concerns include issues related to connectivity, communication, and management protocols. This research paper provides an all-inclusive and lucid review of the current state of anomalies and security concepts related to the IoT. We classify and analyze prevalent security distresses regarding IoT's layered architecture, including connectivity, communication, and management protocols. We establish the foundation of IoT security by examining the current attacks, threats, and cutting-edge solutions. Furthermore, we set security goals that will serve as the benchmark for assessing whether a solution satisfies the specific IoT use cases.

摘要

物联网 (IoT) 技术的出现带来了巨大的可能性,但同时也开辟了新的漏洞和攻击途径,可能危及连接系统的机密性、完整性和可用性。开发安全的物联网生态系统是一个艰巨的挑战,需要系统地和全面地识别和减轻潜在的安全威胁。网络安全研究考虑因素在这方面起着关键作用,因为它们为设计和实施可以应对新兴风险的安全措施提供了基础。为了实现安全的物联网生态系统,科学家和工程师必须首先定义严格的安全规范,作为开发安全设备、芯片组和网络的基础。制定这样的规范需要采用跨学科的方法,涉及多个利益相关者,包括网络安全专家、网络架构师、系统设计师和领域专家。物联网安全的主要挑战是确保系统能够防御已知和未知的攻击。迄今为止,物联网研究界已经确定了与物联网系统架构相关的几个关键安全问题。这些问题包括与连接性、通信和管理协议相关的问题。本研究论文全面而清晰地回顾了与物联网相关的异常和安全概念的现状。我们对物联网分层架构中涉及连接性、通信和管理协议的常见安全问题进行分类和分析。通过检查当前的攻击、威胁和前沿解决方案,我们为物联网安全奠定了基础。此外,我们设定了安全目标,作为评估解决方案是否满足特定物联网用例的基准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddb0/10142206/550f7aef9b12/sensors-23-04117-g001.jpg

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