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Integral Event-Triggered Attack-Resilient Control of Aircraft-on-Ground Synergistic Turning System With Uncertain Tire Cornering Stiffness 被引量:3
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作者 Chenglong Du Fanbiao Li +2 位作者 Yang Shi Chunhua Yang Weihua Gui 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2023年第5期1276-1287,共12页
This article proposes an integral-based event-triggered attack-resilient control method for the aircraft-on-ground(AoG) synergistic turning system with uncertain tire cornering stiffness under stochastic deception att... This article proposes an integral-based event-triggered attack-resilient control method for the aircraft-on-ground(AoG) synergistic turning system with uncertain tire cornering stiffness under stochastic deception attacks. First, a novel AoG synergistic turning model is established with synergistic reverse steering of the front and main wheels to decrease the steering angle of the AoG fuselage, thus reducing the steady-state error when it follows a path with some large curvature. Considering that the tire cornering stiffness of the front and main wheels vary during steering, a dynamical observer is designed to adaptively identify them and estimate the system state at the same time.Then, an integral-based event-triggered mechanism(I-ETM) is synthesized to reduce the transmission frequency at the observerto-controller end, where stochastic deception attacks may occur at any time with a stochastic probability. Moreover, an attackresilient controller is designed to guarantee that the closed-loop system is robust L2-stable under stochastic attacks and external disturbances. A co-design method is provided to get feasible solutions for the observer, controller, and I-ETM simultaneously. An optimization program is further presented to make a tradeoff between the robustness of the control scheme and the saving of communication resources. Finally, the low-and high-probability stochastic deception attacks are considered in the simulations. The results have illustrated that the AoG synergistic turning system with the proposed control method follows a path with some large curvature well under stochastic deception attacks. Furthermore,compared with the static event-triggered mechanisms, the proposed I-ETM has demonstrated its superiority in saving communication resources. 展开更多
关键词 Adaptive observer aircraft-on-ground(AoG)synergistic turning attack-resilient controller integral-based event-triggered mechanism L_2-stability
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一种适用于物联网设备的基于异或门的Pico物理不可克隆函数
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作者 王骏君 黄钊 +3 位作者 刘锦辉 樊璐 万波 王泉 《密码学报(中英文)》 CSCD 北大核心 2024年第2期403-415,共13页
针对可重构Pico-PUF对机器学习建模攻击抵抗能力较弱,本文对RPPUF进行了改进,提出了一种基于异或门的抗ML攻击的可重配置Pico-PUF,即XORPPUF.通过将可配置逻辑中的每个非门替换为异或门,并将PUF的输出进行混淆处理,提高了PUF抗ML攻击能... 针对可重构Pico-PUF对机器学习建模攻击抵抗能力较弱,本文对RPPUF进行了改进,提出了一种基于异或门的抗ML攻击的可重配置Pico-PUF,即XORPPUF.通过将可配置逻辑中的每个非门替换为异或门,并将PUF的输出进行混淆处理,提高了PUF抗ML攻击能力,同时保持PUF性能.在Xilinx Spartan-6XC6SLX25FPGA开发板上实现并验证了提出的XORPPUF.实验结果表明,XORPPUF实现了46.01%的唯一性、99.10%的温度可靠性以及49.1%的均匀性.与RPPUF结构相比,提高了0.21%的唯一性、1.10%的均匀性以及72×的挑战开销比率.不仅如此,对于支持向量机、逻辑回归、决策树、随机森林和人工神经网络攻击时的识别准确率,提出的XORPPUF相比RPPUF分别降低了47.40%、31.37%、12.63%、13.83%和41.16%,即XORPPUF在抗ML攻击中也有着比RPPUF更好的表现.因此更适合资源有限的物联网设备. 展开更多
关键词 物理不可克隆函数 异或门 物联网设备 硬件安全 抗机器学习攻击 FPGA
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Tube Model Predictive Control Based Cyber-attack-resilient Optimal Voltage Control Strategy in Wind Farms
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作者 Zhenming Li Minghao Wang +4 位作者 Yunfeng Yan Donglian Qi Zhao Xu Jianliang Zhang Zezhou Wang 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2024年第2期530-538,共9页
Optimal voltage controls have been widely applied in wind farms to maintain voltage stability of power grids.In order to achieve optimal voltage operation,authentic grid information is widely needed in the sensing and... Optimal voltage controls have been widely applied in wind farms to maintain voltage stability of power grids.In order to achieve optimal voltage operation,authentic grid information is widely needed in the sensing and actuating processes.However,this may induce system vulnerable to malicious cyber-attacks.To this end,a tube model predictive control-based cyber-attack-resilient optimal voltage control method is proposed to achieve voltage stability against malicious cyber-attacks.The proposed method consists of two cascaded model predictive controllers(MPC),which outperform other peer control methods in effective alleviation of adverse effects from cyber-attacks on actuators and sensors of the system.Finally,efficiency of the proposed method is evaluated in sensor and actuator cyber-attack cases based on a modified IEEE 14 buses system and IEEE 118 buses system.Index Terms-Attack-resilient control,optimal voltage control,tube-based model predictive control,wind farm-connected power system. 展开更多
关键词 attack-resilient control optimal voltage control tube-based model predictive control wind farm-connected power system
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稀疏恶意攻击下的信息物理系统的“PID”型性能和安全控制 被引量:1
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作者 谢春华 杨辉 李哲 《中国科学:信息科学》 CSCD 北大核心 2021年第1期89-103,共15页
针对遭受稀疏恶意攻击的离散时间线性系统,本文研究其安全控制问题.假设恶意攻击者受有限资源的约束,仅能操控远程控制器和执行器之间的若干通信通道.对于设计者来说,并不知道哪些通道受到攻击,哪些通道没有受到攻击.本文提出了一种新... 针对遭受稀疏恶意攻击的离散时间线性系统,本文研究其安全控制问题.假设恶意攻击者受有限资源的约束,仅能操控远程控制器和执行器之间的若干通信通道.对于设计者来说,并不知道哪些通道受到攻击,哪些通道没有受到攻击.本文提出了一种新的安全的远程控制方法,它由控制律、切换函数和选择机制构成.选择机制为控制律提供合适的反馈增益,并产生一个切换函数,用以阻止攻击信号进入被控对象.理论分析表明,在基本的和必要的假设条件下,本文考虑的安全控制问题可转化为求解状态反馈镇定问题.本文所提控制方法,能保证闭环系统的稳定性且使其具有"PID"型性能的抗攻击能力.最后,通过对某无人地面车辆系统的仿真实验,验证了理论结果的正确性. 展开更多
关键词 安全控制 信息物理系统 稀疏恶意攻击 切换策略 抗攻击性能
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