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Cybersecurity for Microgrid

机译:微电网的网络安全

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摘要

As we strive to reduce our carbon footprint and move towards a greener eco-friendly world, digital technology can be harnessed to address the challenges facing consumers and power distribution networks by managing their energy needs through the deployment of the microgrid.Microgrids integrate local energy production from renewable energy sources (e.g., solar, wind, hydro, etc.) providing locally optimized distributed energy generation and storage along with resilience against disruption in power distribution through self-islanding. However, the very attributes that make the microgrid suitable for deployment also makes it susceptible to security breaches.Some technologies that improve the security posture around the microgrid and provide a more secure management of energy data while satisfying the energy needs include Security Orchestration, Automation and Response (SOAR), Machine Learning, Artificial Intelligence, and Blockchain technology. In this paper we discuss the basic architecture behind these technologies and why they may provide the microgrid with a security solution against cyberattacks.
机译:正如我们努力减少碳足迹并走向更环保的环保世界,数字技术可以通过通过部署微电器的部署来解决消费者和配电网络面临的挑战.MicroGrids集成了本地能源生产从可再生能源(例如,太阳能,风,水电等)提供局部优化的分布能源发电和存储以及通过自我岛屿的功率分布中断的弹性。但是,使MicroGrid适用于部署的属性也使得它易于安全漏洞。有些技术,以提高微电网周围的安全姿势,并提供更安全的能量数据管理,同时满足能量需求包括安全编程,自动化和自动化响应(SOAR),机器学习,人工智能和区块技术。在本文中,我们讨论了这些技术背后的基本架构,为什么他们可以向微电网提供对抗网络攻击的安全解决方案。

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