SCIÆÚ¿¯Special issue Õ÷¸åÀ²£¡ÖÇÄÜ£¨Î¢£©µçÍøÏà¹ØµÄÑо¿·½Ïò£¬»¶Ó´Í¸å£¡
ComplexityÔÓÖ¾£¨ÖпÆÔº¶þÇø£¬Ó°ÏìÒò×Ó2.462£©Special issue Õ÷¸åÀ²£¡£¡£¡½ØÖ¹ÈÕÆÚ2021Äê8ÔÂ21ÈÕ£¬»¶Ó¸÷λÀÏʦͬѧ²»Áߴ͸壡¡£¾ßÌåÄÚÈÝÈçÏ£¨»òµã»÷Ö÷Ò³https://www.hindawi.com/journals/complexity/si/719582/£©£º
Cyber-Enabled Intelligence Control and Security Optimization for Complex Microgrid Networks
Microgrids as typical Cyber-Physical Systems (CPS), characterized by the deep integration of physical power processes with information and communication technologies, can be generally modelled as a complex network of interacting CPS-based power elements with a large amount of data that involves heavy computation load. This can be used to tackle significant challenges in a variety of aspects, such as performance, security, reliability, scalability, flexibility, and sustainability. Handling such complex microgrid networks requires innovative computation architectures and salient computation techniques.
This Special Issue aims to promote new trends in state-of-the-art research covering all aspects of design, optimization, implementation, and evaluation of advanced solutions for CPS-oriented microgrid applications. We welcome both original research and review articles.
Potential topics include but are not limited to the following:
Robustness control for CPS-based microgrid complex networks
Security and safety solutions for CPS-oriented microgrid complex networks
The control and optimization of CPS-oriented microgrid clusters
Cyber-enabled distributed intelligence of microgrid complex networks
Cyber-based security control for microgrid complex networks
Ontology-based models for CPS-oriented microgrid complex networks
Multi-agent system intelligence of microgrid complex networks
Model-driven nonlinear dynamics of microgrid complex networks
Resilient control frameworks for CPS-based microgrid system development
Human-in-the-loop control for CPS-oriented microgrid complex networks
·µ»ØÐ¡Ä¾³æ²é¿´¸ü¶à
¾©¹«Íø°²±¸ 11010802022153ºÅ
¡£
¼ÓÓÍ
.
ÉϧҪ½»°æÃæ·Ñ
£¬