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Microgrids: Planning, Protection and Control

Microgrids: Planning, Protection and Control

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This Special Issue will include papers related to the planning, protection, and control of smart grids and microgrids, and their applications in the industry, transportation, water, waste, and urban and residential infrastructures. Authors are encouraged to present their latest research; reviews on topics including methods, approaches, systems, and technology; and interfaces to other domains such as big data, cybersecurity, human–machine, sustainability, and smart cities. The planning side of microgrids might include technology selection, scheduling, interconnected microgrids, and their integration with regional energy infrastructures. The protection side of microgrids might include topics related to protection strategies, risk management, protection technologies, abnormal scenario assessments, equipment and system protection layers, fault diagnosis, validation and verification, and intelligent safety systems. The control side of smart grids and microgrids might include control strategies, intelligent control algorithms and systems, control architectures, technologies, embedded systems, monitoring, and deployment and implementation.

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Keywords

  • augmenting path
  • battery energy storage system
  • battery swap station
  • charging station
  • control tuning
  • controller validation
  • critical clearing times
  • data reduction
  • DC microgrid
  • demand management
  • demand response
  • demand uncertainty
  • demand-side management
  • DER
  • DER-CAM
  • diesel generators
  • distributed generation
  • economic dispatch problem
  • electric vehicle
  • electricity markets
  • frequency stability
  • full time-series optimization
  • grid-feeding photovoltaics
  • grid-forming battery storage systems
  • History of engineering & technology
  • hybrid power plant
  • Isolated/Islanded Microgrids
  • load flow
  • Mathematical optimization
  • measurement uncertainties
  • micro-grid
  • microgrid
  • microgrids
  • MILP
  • model-based design
  • nonlinear programming formulation
  • off-grid electricity systems
  • operation
  • optimal reallocation of batteries
  • optimization
  • Planning
  • power conditioner system
  • power flow control
  • power fluctuations
  • power quality
  • power system
  • renewable energy
  • Renewable energy sources
  • run-time
  • scalable microgrid
  • simulation
  • small-signal analysis
  • Smart grid
  • stand-alone hybrid microgrids
  • state-space model
  • system stability degree
  • Technology, engineering, agriculture
  • Technology: general issues
  • the micro-hybrid method
  • transient stability assessment
  • vehicle-to-grid
  • voltage stability
  • XENDEE

Links

DOI: 10.3390/books978-3-0365-3662-0

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