Assessing and Mitigating Impact of Time Delay Attack : A Case Study for Power Grid Frequency Control
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[1] Chee Kheong Siew,et al. Extreme learning machine: Theory and applications , 2006, Neurocomputing.
[2] David K. Y. Yau,et al. Taming Asymmetric Network Delays for Clock Synchronization Using Power Grid Voltage , 2017, AsiaCCS.
[3] Chika O. Nwankpa,et al. An Exact Method for Computing Delay Margin for Stability of Load Frequency Control Systems With Constant Communication Delays , 2016, IEEE Transactions on Power Systems.
[4] David K. Y. Yau,et al. Optimal False Data Injection Attack against Automatic Generation Control in Power Grids , 2016, 2016 ACM/IEEE 7th International Conference on Cyber-Physical Systems (ICCPS).
[5] David K. Y. Yau,et al. Exploiting Electrical Grid for Accurate and Secure Clock Synchronization , 2018, ACM Trans. Sens. Networks.
[6] B. Wollenberg,et al. An Advanced Contingency Selection Algorithm , 1981, IEEE Transactions on Power Apparatus and Systems.
[7] Miao He,et al. Robust Online Dynamic Security Assessment Using Adaptive Ensemble Decision-Tree Learning , 2013, IEEE Transactions on Power Systems.
[8] Shengyuan Xu,et al. On Equivalence and Efficiency of Certain Stability Criteria for Time-Delay Systems , 2007, IEEE Transactions on Automatic Control.
[9] David K. Y. Yau,et al. Profit-Optimal and Stability-Aware Load Curtailment in Smart Grids , 2013, IEEE Transactions on Smart Grid.
[10] D. Debeljkovic,et al. Asymptotic Stability Analysis of Linear Time- Delay Systems: Delay Dependent Approach , 2008 .
[11] Yong He,et al. Further Results on Delay-Dependent Stability of Multi-Area Load Frequency Control , 2013, IEEE Transactions on Power Systems.
[12] Deepa Kundur,et al. Impact of cyber attacks on transient stability of smart grids with voltage support devices , 2013, 2013 IEEE Power & Energy Society General Meeting.
[13] Stamatis Karnouskos,et al. Stuxnet worm impact on industrial cyber-physical system security , 2011, IECON 2011 - 37th Annual Conference of the IEEE Industrial Electronics Society.
[14] V. Brandwajn,et al. Pre-screening of single contingencies causing network topology changes , 1991, IEEE Power Engineering Review.
[15] John Lygeros,et al. Cyber attack in a two-area power system: Impact identification using reachability , 2010, Proceedings of the 2010 American Control Conference.
[16] Tarlochan S. Sidhu,et al. Contingency screening for steady-state security analysis by using FFT and artificial neural networks , 2000 .
[17] Yin Zhang,et al. Detecting Stepping Stones , 2000, USENIX Security Symposium.
[18] Virgilio Centeno,et al. Effect of communication Time-Delay attacks on the performance of Automatic Generation Control , 2015, 2015 North American Power Symposium (NAPS).
[19] Deepa Kundur,et al. A Cyber-Physical Control Framework for Transient Stability in Smart Grids , 2018, IEEE Transactions on Smart Grid.
[20] R. Fischl,et al. Application of neural networks to power system security: technology and trends , 1994, Proceedings of 1994 IEEE International Conference on Neural Networks (ICNN'94).
[21] David K. Y. Yau,et al. Collaborative Load Management with Safety Assurance in Smart Grids , 2017, ACM Trans. Cyber Phys. Syst..
[22] H. Chiang. Study of the existence of energy functions for power systems with losses , 1989 .
[23] Munther A. Dahleh,et al. Volatility of Power Grids Under Real-Time Pricing , 2011, IEEE Transactions on Power Systems.
[24] John Lygeros,et al. A robust policy for Automatic Generation Control cyber attack in two area power network , 2010, 49th IEEE Conference on Decision and Control (CDC).
[25] Bo Wang,et al. Power System Transient Stability Assessment Based on Big Data and the Core Vector Machine , 2016, IEEE Transactions on Smart Grid.
[26] Carson W. Taylor,et al. Definition and Classification of Power System Stability , 2004 .
[27] Shuzhi Sam Ge,et al. Cognitive Radio Based State Estimation in Cyber-Physical Systems , 2014, IEEE Journal on Selected Areas in Communications.