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CYBER-ATTACK DETECTION AND ELECTRICAL SYSTEM STABILITY FOR ELECTRIC VEHICLE CHARGING INFRASTRUCTURE

机译:电动汽车充电基础设施的网络攻击检测和电气系统稳定性

摘要

Some embodiments provide a system to protect an electric vehicle charging infrastructure. An electric vehicle charging site may receive Alternating Current (“AC”) power from a power grid and provides Direct Current (“DC”) power to electric vehicles. A sensor spoof observer and controller may receive information from at least two AC current sensors, wherein the observer calculates a grid voltage disturbance using a structure based on an AC filter dynamic model. A system stability assurance platform may: (i) monitor current and voltage to detect resonance, (ii) identify impedance associated with a detected resonance, and (iii) apply a result of an analysis of the identified impedance to an adaptive damping control algorithm. A user interface platform may then provide information about a component of the charging infrastructure being cyber-attacked to a distribution system operator via a graphical user interface display.
机译:一些实施例提供了一种保护电动车辆充电基础设施的系统。电动车辆充电站点可以从电网接收交流电(“ AC”),并向电动车辆提供直流电(“ DC”)。传感器欺骗观察者和控制器可以从至少两个交流电流传感器接收信息,其中观察者使用基于交流滤波器动态模型的结构来计算电网电压扰动。系统稳定性保证平台可以:(i)监视电流和电压以检测共振,(ii)识别与检测到的共振相关的阻抗,以及(iii)将识别出的阻抗的分析结果应用于自适应阻尼控制算法。然后,用户界面平台可以通过图形用户界面显示向分配系统运营商提供关于被网络攻击的充电基础设施的组件的信息。

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