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Application of Power Electronics Converters in Smart Grids and Renewable Energy Systems

Application of Power Electronics Converters in Smart Grids and Renewable Energy Systems

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This book focuses on the applications of Power Electronics Converters in smart grids and renewable energy systems. The topics covered include methods to CO2 emission control, schemes for electric vehicle charging, reliable renewable energy forecasting methods, and various power electronics converters. The converters include the quasi neutral point clamped inverter, MPPT algorithms, the bidirectional DC-DC converter, and the push–pull converter with a fuzzy logic controller.

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Keywords

  • active damping
  • adaptive control strategy (ACS)
  • air-cooled condenser
  • allied in-situ injection and production (AIIP)
  • battery energy storage system
  • charge pump capacitor
  • CO2 huff and puff
  • compatibility
  • complex building environment
  • coordination technology
  • dc-dc converter
  • DC–DC converter
  • distribution network (DN)
  • doubly-fed induction generator (DFIG)
  • dynamic modeling
  • electric vehicle
  • electric vehicle (EV)
  • electrical harmonics
  • enhanced oil recovery
  • feeder automation (FA)
  • Forecasting
  • fuzzy logic control
  • Grey Wolf Optimizer
  • harmonic estimation
  • high efficiency
  • hot recirculation rate
  • maximum power point tracking
  • mechanical draft wet-cooling towers
  • medium voltage distribution network
  • modulation index
  • neural networks
  • Neutral Point Clamped Z-Source Inverter (NPCZSI)
  • Numerical Simulation
  • off-grid voltage source inverter
  • optimal economic dispatch
  • orderly charging
  • particle swarm optimization
  • photovoltaic
  • power quality
  • push pull converter
  • reconfiguration
  • Renewable energy sources
  • shale oil reservoirs
  • shoot-through duty ratio
  • switch station
  • third-harmonic current injection
  • total harmonic distortion
  • voltage gain
  • Weibull distribution

Links

DOI: 10.3390/books978-3-0365-4374-1

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