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DoS攻击能量分级检测与补偿下的ICPS多目标约束综合安全控制

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针对DoS攻击与执行器故障共存的工业信息物理融合系统(Industry cyber-physical system,ICPS),本文研究了多目标约束下的ICPS综合安全控制问题。首先,从防御者的角度,依据系统遭受不同能量DoS攻击所表现的差异化影响,制定了 DoS攻击能量分级标准,构建了ICPS综合安全控制架构。其次,设计了基于事件触发的安全传输策略,在DoS攻击能量分级检测机制下,针对大能量攻击考虑基于时间序列分析的方法对丢失数据进行预测补偿,从而在被动弹性应对小能量攻击的基础上增加了对DoS攻击的主动防御能力。接着,引入锥补线性化算法,推证出了状态与故障估计观测器、综合安全控制器的求取方法,实现了 DoS攻击主被动混合容侵与执行器故障主动容错的目标。最后,给出了四容水箱系统仿真示例,验证了所得结论的有效性。
ICPS multi-target constrained comprehensive security control based on DoS attacks energy grading detection and compensation
Aiming at the industry cyber-physical system(ICPS)where Denial-of-Service(DoS)attacks and actuator failure coexist,the integrated security control problem of ICPS under multi-objective constraints was studied.First,from the perspective of the defender,according to the differential impact of the system under DoS attacks of different energies,the DoS attacks energy grading detection standard was formulated,and the ICPS comprehensive security control framework was constructed.Secondly,a security transmission strategy based on event triggering was designed.Under the DoS attack energy classification detection mechanism,for large-energy attacks,the method based on time series analysis was considered to predict and compensate for lost data.Therefore,on the basis of passive and elastic response to small energy attacks,the active defense capability against DoS attacks was increased.Then by introducing the cone-complement linearization algorithm,the calculation methods of the state and fault estimation observer and the integrated safety controller were deduced,the goal of DoS attack active and passive hybrid intrusion tolerance and actuator failure active fault tolerance were realized.Finally,a simulation example of a four-capacity water tank system was given to verify the validity of the obtained conclusions.

industry cyber-physical system(ICPS)Denial-of-Service(DoS)attacks energy grading detectionsecurity event triggering mechanismtime series analysis methodscone complementary linearization

韩寅龙、韩小武

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酒泉职业技术学院新能源工程学院,甘肃酒泉 735000

西安明德理工学院智能制造与控制技术学院,陕西西安 710124

工业信息物理融合系统 DoS攻击能量分级 安全事件触发机制 时间序列分析方法 锥补线性化

2024

测试科学与仪器
中北大学

测试科学与仪器

影响因子:0.111
ISSN:1674-8042
年,卷(期):2024.15(4)