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Real Time Intelligent Data Processing Algorithm for Cyber Resilient Electric Vehicle Onboard Chargers

机译:用于网络弹性电动车载充电器的实时智能数据处理算法

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This paper analyzes the impacts of various data integrity based cyber attacks on power electronic hardware present in electric vehicle (EV) chargers and proposes an universally applicable hardware-based countermeasure algorithm to protect the onboard charging (OBC) systems. The effectiveness of the proposed defense mechanism is comprehensively analyzed by testing the system against several recurring cyberattack triggered faults in the OBC. To evaluate the impact of various cyberattacks on the system, two different power electronic topologies of EV OBC are taken into consideration. Further on, single phase and three phase charger topologies are simulated in MATLAB/Simulink to comprehend the impact of various faults occuring as a result of different data integrity attack scenarios, and to validate the effectiveness of the proposed algorithm. Quantitative analysis of the results demonstrates that the proposed intelligent data processing algorithm, implemented in the charger's main controller, can be effectively used with different charging architectures / topologies proving its universal application against cyberattacks on the OBC systems.
机译:本文分析了各种数据完整性基于电力汽车(EV)充电器电力电子硬件的影响,并提出了一种普遍适用的基于硬件的对策算法来保护车载充电(OBC)系统。通过测试系统对OBC中的几个经常性网络触发故障进行了全面分析了拟议的防御机制的有效性。为了评估各种网络攻击对系统的影响,考虑了两种不同的EV obc的电源电子拓扑。此外,在Matlab / Simulink中模拟单相和三相充电器拓扑,以了解不同数据完整性攻击方案的各种故障的影响,并验证所提出的算法的有效性。结果的定量分析表明,所提出的智能数据处理算法在充电器的主控制器中实现,可以有效地使用不同的充电架构/拓扑,证明其通用应用于OBC系统上的Cyber​​Actacks。

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