应对智能电网技术的网络安全挑战:对可持续能源基础设施的影响

Henry Nwapali Ndidi Naiho, Oluwabunmi Layode, Gbenga Sheriff Adeleke, Ezekiel Onyekachukwu Udeh, Talabi Temitope Labake
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引用次数: 0

摘要

本研究系统回顾了智能电网技术的网络安全挑战及其对可持续能源基础设施的影响。主要目的是分析智能电网固有的脆弱性,评估现有的网络安全措施,并提出增强安全性的战略建议。本研究采用系统的文献综述和内容分析,仔细研究了 2014 年至 2024 年间发表的同行评审文章、技术报告和标准文件。研究方法侧重于识别智能电网中的网络安全威胁、漏洞和缓解策略,同时探讨标准、监管框架和利益相关者的责任在提高电网安全性中的作用。主要研究结果表明,智能电网在提高效率和可靠性的同时,由于集成了信息和通信技术,也带来了重大的网络安全漏洞。先进的网络安全措施,包括加密和实时入侵检测,对于保护这些基础设施至关重要。该研究强调了利益相关者之间合作努力的重要性,以及制定适合智能电网技术的全面网络安全标准的重要性。最后,智能电网网络安全的未来既是挑战也是机遇,有可能利用区块链和人工智能等新兴技术来加强安全措施。研究提出了若干政策建议,包括执行网络安全标准和促进威胁情报共享。最后,该研究强调了创新安全解决方案和跨学科研究的必要性,以连接技术和决策领域,确保智能电网技术的安全和可持续发展。关键词智能电网网络安全 网络安全漏洞 网络安全措施 可持续能源基础设施
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addressing cybersecurity challenges in smart grid technologies: Implications for sustainable energy infrastructure
This study systematically reviews the cybersecurity challenges in smart grid technologies and their implications for sustainable energy infrastructure. The primary objective is to analyze the vulnerabilities inherent in smart grids, evaluate existing cybersecurity measures, and propose strategic recommendations for enhancing security. Employing a systematic literature review and content analysis, this research scrutinizes peer-reviewed articles, technical reports, and standards documents published between 2014 and 2024. The methodology focuses on identifying cybersecurity threats, vulnerabilities, and mitigation strategies within smart grids, alongside exploring the role of standards, regulatory frameworks, and stakeholder responsibilities in enhancing grid security. Key findings reveal that while smart grids offer enhanced efficiency and reliability, they also introduce significant cybersecurity vulnerabilities due to the integration of ICT. Advanced cybersecurity measures, including encryption and real-time intrusion detection, are critical in safeguarding these infrastructures. The study underscores the importance of collaborative efforts among stakeholders and the development of comprehensive cybersecurity standards tailored to smart grid technologies. Finally, the future of smart grid cybersecurity presents both challenges and opportunities, with the potential for leveraging emerging technologies like blockchain and AI to enhance security measures. The study proposes several policy recommendations, including the enforcement of cybersecurity standards and the promotion of threat intelligence sharing. Conclusively, the research highlights the need for innovative security solutions and interdisciplinary research to bridge technical and policy-making domains, ensuring the secure and sustainable development of smart grid technologies. Keywords: Smart Grid Cybersecurity, Cybersecurity Vulnerabilities, Cybersecurity Measures, Sustainable Energy Infrastructure.
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