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Analysis of cascading failures of power cyber-physical systems considering false data injection attacks

机译:考虑虚假数据注入攻击的电力网络物理系统级联故障分析

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This study considers the performance impacts of false data injection attacks on the cascading failures of a power cyber-physical system,and identifies vulnerable nodes.First,considering the monitoring and control functions of a cyber network and power flow characteristics of a power network,a power cyber-physical system model is established.Then,the influences of a false data attack on the decision-making and control processes of the cyber network communication processes are studied,and a cascading failure analysis process is proposed for the cyber-attack environment.In addition,a vulnerability evaluation index is defined from two perspectives,i.e.,the topology integrity and power network operation characteristics.Moreover,the effectiveness of a power flow betweenness assessment for vulnerable nodes in the cyberphysical environment is verified based on comparing the node power flow betweenness and vulnerability assessment index.Finally,an IEEE14-bus power network is selected for constructing a power cyber-physical system.Simulations show that both the uplink communication channel and downlink communication channel suffer from false data attacks,which affect the ability of the cyber network to suppress the propagation of cascading failures,and expand the scale of the cascading failures.The vulnerability evaluation index is calculated for each node,so as to verify the effectiveness of identifying vulnerable nodes based on the power flow betweenness.
机译:本研究考虑了假数据注入攻击对电源网络物理系统的级联故障的性能影响,并识别易受攻击的节点。首先,考虑到电力网络的网络网络和功率流特性的监控和控制功能,a建立了电力网络物理系统模型。该研究,研究了假数据攻击对网络网络通信过程的决策和控制过程的影响,并提出了对网络攻击环境的级联故障分析过程。此外,漏洞评估指标由两个视角来定义,即拓扑完整性和电力网络操作特征.Orouse,基于比较节点电源流程来验证了控制网络物体环境中的易受攻击节点之间的功率流量之间的有效性之间的性和漏洞评估索引。最后,选择了IEEE14-Bus电源网络以进行约束电源网络物理系统.Simulations表明,上行链路通信信道和下行链路通信信道都会受到错误数据攻击,这影响网络网络抑制级联故障传播的能力,并扩展级联故障的比例。为每个节点计算漏洞评估索引,以验证基于之间的功率流识别识别易受攻击的节点的有效性。

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