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Resilience for Decarbonized Power Systems under Cyber-Physical Attacks
截止日期:2025年8月31日
Power systems are undergoing rapid transformation in two important areas. Computer intelligence, smart methods and equipment, for example digitalized solutions such as smart sensors, computerized management systems and the broad field of Internet of Things (IoT) enable perception, efficient computation and robust control in a unified framework. Secondly, the increasing penetration of renewable energy sources (RES) reduces grid inertia, leading to concerns around system stability, operational security and energy adequacy. In the power systems of the near future, RES volatility, possible conflicting interests of the deregulated energy markets, or an extensive cyber-physical attack, demand urgent research into power system resilience, particularly in the context of the above challenging landscape.
This special issue seeks to motivate researchers and practitioners to address technical challenges and research gaps to ensure and enhance the current and future resilience of power systems with high shares of renewables in the occasion of cyber-physical attacks of any type and extent, and to develop strategies for detection, prevention, and response to resilience threats.
Resiliency, security and reliability against cyber-physical attacks in smart grids and microgrids based on renewable energy;
Coordination of distributed renewable energy sources considering resiliency under cyber-physical attacks;
Resilient IoT-based control and planning in smart grids and microgrids based on renewable energy;
Resilient state estimation of smart grids and microgrids based on renewable energy under cyber-physical attacks;
Impact analysis of cyber-physical attacks on system stability in grids with high renewable energy penetrations;
Design and simulation of resilient distributed renewable energy sources under cyber-physical attacks;
Resilient operation and protection of distributed renewable energy sources under cyber-physical attacks;
Methods and algorithms of intrusion detection and defence under cyber-physical attacks in grids with high renewable energy penetrations;
Game theory between cyber-physical attacker and defender in grids with high renewable energy penetrations;
Other topics related to resilience for smart grids and microgrids based on renewable energy under cyber-physical attacks.
Zhijian Hu (Lead)
Nanyang Technological University
Singapore
Hao Wang
Monash University
Australia
Feng Guo
University of Wisconsin-Milwaukee
United States of America
Amer Al-Hinai
Sultan Qaboos University
Oman
Pierluigi Siano
University of Salerno
Italy
Yushuai Li
Aalborg University
Denmark
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