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DC & Hybrid Micro-Grids
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This book is a printed version of the papers published in the Special Issue “DC & Hybrid Microgrids” of Applied Sciences. This Special Issue, co-organized by the University of Pisa, Italy and Østfold University College in Norway, has collected nine papers and the editorial, from 28 submitted, with authors from Asia, North America and Europe. The published articles provide an overview of the most recent research advances in direct current (DC) and hybrid microgrids, exploiting the opportunities offered by the use of renewable energy sources, battery energy storage systems, power converters, innovative control and energy management strategies.

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Keywords

  • AC/DC distribution network
  • active islanding detection method
  • battery energy storage
  • battery-only operation
  • Bidirectional converters
  • biomass energy
  • circuit breaker (CB)
  • constant power load
  • constant power loads
  • CPL
  • DC grid
  • DC insulation monitoring
  • direct current (DC) grid
  • direct current (DC) microgrid
  • distributed generator
  • distributed generator (DG)
  • droop control
  • energy management strategy (EMS)
  • floating DC bus
  • forest microgrid
  • full-electric vehicles (EV)
  • genetic-ant colony hybrid algorithm
  • ground capacitance
  • hybrid energy storage
  • hybrid micro-grid
  • hybrid microgrid
  • hybrid vehicles (HEV)
  • inertia improvement
  • injected signal cancellation
  • islanded DC microgrid
  • Islanding detection
  • large transmission line inductive
  • micro-grid
  • microgrid
  • multi-distributed generations
  • operation mode-based sectional coordinated control
  • patrol base
  • perturbation signal
  • photovoltaic (PV)
  • photovoltaic system
  • Planning
  • power management
  • predictive control
  • renewable energy sources (RES)
  • simplified circuit model
  • Smart grid
  • solar
  • Stability
  • stability criterion
  • standard test condition (STC)
  • state of charge (SOC)
  • Technology, engineering, agriculture
  • Technology: general issues
  • three-point climbing algorithm
  • timing characteristics
  • unbalanced electric bridge
  • virtual negative inductance

Links

DOI: 10.3390/books978-3-0365-1974-6

Editions

edition cover

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