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A Real-Time Hardware-in-the-Loop (HIL) Cybersecurity Testbed for Power Electronics Devices and Systems in Cyber-Physical Environments

机译:用于电力电子设备和网络 - 物理环境中的电力电子设备和系统的实时硬件循环(HIL)网络安全

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摘要

Cybersecurity of power electronics (PE) is increasingly essential as more systems from renewable energy systems, energy storage systems, and electric vehicle charging stations utilize PE devices to connect them into power grids with complex communication and computation systems for advanced control and situational awareness improvement in smart grid environments. However, cybersecurity research and development (R&D) of networked power electronics (PE) is hampered by the lack of real-time security testbed incorporating real cyber events. This paper proposes a real-time hardware-in-the-loop cybersecurity tested for PE systems in cyber-physical environments. The proposed security testbed consists of: 1) a real-time PE system simulator; 2) a real-time cyber system using real network systems and a server; and 3) penetration testing tools generating real Cyber-attacks as cyber events. Several real cyber-attacks are created and their impacts in a PE system are provided to validate the feasibility of the proposed security testbed.
机译:电力电子设备(PE)的网络安全越来越重要,因为可再生能源系统,能量存储系统和电动车辆充电站利用PE设备将它们连接到具有复杂通信和计算系统的电网,以进行高级控制和态势意识改进智能电网环境。然而,网络电力电子(PE)的网络安全研究和开发(R&D)因缺乏包含真正网络事件的实时安全测试缺乏。本文提出了对网络物理环境中的PE系统测试的实时硬件内网络安全性。所提出的安全测试平台包括:1)实时PE系统模拟器; 2)使用真实网络系统和服务器的实时网络系统; 3)渗透测试工具作为网络事件产生真正的网络攻击。创建了几种真正的网络攻击,并提供了它们在PE系统中的影响以验证所提出的安全测试的可行性。

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