Resiliency/Cost-Based Optimal Design of Distribution Network to Maintain Power System Stability Against Physical Attacks: A Practical Study Case
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Taher Niknam | Gevork B. Gharehpetian | Sanjeevikumar Padmanaban | Hamid Reza Baghaee | Mohammad Ghiasi | Moslem Dehghani | Hamdulah Aliev | G. Gharehpetian | M. Dehghani | T. Niknam | H. Baghaee | S. Padmanaban | Hamdulah Aliev | M. Ghiasi
[1] Tomislav Dragicevic,et al. Detection of False Data Injection Cyber-Attacks in DC Microgrids Based on Recurrent Neural Networks , 2021, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[2] Dong-Joo Kang,et al. Proposal strategies of key management for data encryption in SCADA network of electric power systems , 2009 .
[3] M. Roscia,et al. Smart Resilient City and IoT Towards Sustainability of Africa , 2018, 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA).
[4] Taher Niknam,et al. Cyber Attack Detection Based on Wavelet Singular Entropy in AC Smart Islands: False Data Injection Attack , 2021, IEEE Access.
[5] Mohammad Ghiasi,et al. Detailed study, multi-objective optimization, and design of an AC-DC smart microgrid with hybrid renewable energy resources , 2019, Energy.
[6] Mohammad Sadegh Sepasian,et al. Resilience assessment and improvement of distribution networks against extreme weather events , 2021 .
[7] Siddharth Suman,et al. Investigating Overall Structure of Cyber-Attacks on Smart-Grid Control Systems to Improve Cyber Resilience in Power System , 2020 .
[8] Taher Niknam,et al. Time-Varying Sliding Mode Control Strategy for Multibus Low-Voltage Microgrids with Parallel Connected Renewable Power Sources in Islanding Mode , 2016 .
[9] Hamzeh DAVARIKIA,et al. A tri-level programming model for attack-resilient control of power grids , 2018, Journal of Modern Power Systems and Clean Energy.
[10] J. Salmeron,et al. Analysis of electric grid security under terrorist threat , 2004, IEEE Transactions on Power Systems.
[11] Alexis Kwasinski,et al. Availability Evaluation of Micro-Grids for Resistant Power Supply During Natural Disasters , 2012, IEEE Transactions on Smart Grid.
[12] Farrokh Aminifar,et al. Front Lines Against the Darkness: Enhancing the Resilience of the Electricity Grid Through Microgrid Facilities , 2016, IEEE Electrification Magazine.
[13] Ricard Sol'e,et al. Analysis of major failures in Europe’s power grid , 2009, 0906.1109.
[14] John Kaiser Calautit,et al. A fluid-structure interaction (FSI) and energy generation modelling for roof mounted renewable energy installations in buildings for extreme weather and typhoon resilience , 2020 .
[15] Ettore Francesco Bompard,et al. Classification and trend analysis of threats origins to the security of power systems , 2013 .
[16] Navid Bayati,et al. A Comparative Study between Traditional Backup Generator Systems and Renewable Energy Based Microgrids for Power Resilience Enhancement of a Local Clinic , 2019, Electronics.
[17] Paras Mandal,et al. Networked microgrids with roof-top solar PV and battery energy storage to improve distribution grids resilience to natural disasters , 2020 .
[18] Wencong Su,et al. Stochastic Resilient Post-Hurricane Power System Recovery Based on Mobile Emergency Resources and Reconfigurable Networked Microgrids , 2018, IEEE Access.
[19] Payman Dehghanian,et al. Electric Power Grid Resilience to Cyber Adversaries: State of the Art , 2020, IEEE Access.
[20] Lamine Mili,et al. A resilience assessment approach for power system from perspectives of system and component levels , 2020 .
[21] Mohammad Ghiasi,et al. A comparative study on common power flow techniques in the power distribution system of the Tehran metro , 2018, Tehnički glasnik.
[22] Abdollah Kavousi-Fard,et al. Deep learning based method for false data injection attack detection in AC smart islands , 2020, IET Generation, Transmission & Distribution.
[23] Taher Niknam,et al. False Data Injection Attack Detection based on Hilbert-Huang Transform in AC Smart Islands , 2020, IEEE Access.
[24] M. Dehghani,et al. Blockchain-Based Securing of Data Exchange in a Power Transmission System Considering Congestion Management and Social Welfare , 2020, Sustainability.
[25] Golshan Madraki,et al. Cyber-Physical Resilience of Electrical Power Systems Against Malicious Attacks: a Review , 2018 .
[26] James P. Peerenboom,et al. Identifying, understanding, and analyzing critical infrastructure interdependencies , 2001 .
[27] Mohammad Ghiasi,et al. Role of Renewable Energy Sources in Evaluating Technical and Economic Efficiency of Power Quality , 2019, Technology and Economics of Smart Grids and Sustainable Energy.
[28] Mohammad Ghiasi,et al. An analytical methodology for reliability assessment and failure analysis in distributed power system , 2018, SN Applied Sciences.
[29] I. Dobson,et al. Investment Planning for Electric Power Systems Under Terrorist Threat , 2010, IEEE Transactions on Power Systems.
[30] Mohammad Ghiasi,et al. Optimal capacitor placement to minimizing cost and power loss in Tehran metro power distribution system using ETAP (A case study) , 2016, Complex..
[31] Farrokh Aminifar,et al. Microgrid Scheduling With Uncertainty: The Quest for Resilience , 2016, IEEE Transactions on Smart Grid.
[32] Taher Niknam,et al. Cyber-Attack Detection and Cyber-Security Enhancement in Smart DC-Microgrid Based on Blockchain Technology and Hilbert Huang Transform , 2021, IEEE Access.
[33] F. Gubina,et al. Prediction of Power System Security Levels , 2009, IEEE Transactions on Power Systems.
[34] Tomislav Dragicevic,et al. False Data Injection Cyber-Attacks Mitigation in Parallel DC/DC Converters Based on Artificial Neural Networks , 2020, IEEE Transactions on Circuits and Systems II: Express Briefs.