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Power Electronics in Renewable Energy Systems

Power Electronics in Renewable Energy Systems

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This book offers a collection of 30 scientific papers which address the problems associated with the use of power electronic converters in renewable energy source-based systems. Relevant problems associated with the use of power electronic converters to integrate renewable energy systems to the power grid are presented. Some of the covered topics relate to the integration of photovoltaic and wind energy generators into the rest of the system, and to the use of energy storage to mitigate power fluctuations, which are a characteristic of renewable energy systems. The book provides a good overview of the abovementioned topics.

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Keywords

  • active front-end converter
  • active power filter
  • adaptive control
  • adaptive notch filter (ANF)
  • adaptive resonant controller
  • adaptive-MPPT (maximum power point tracking)
  • back-to-back converter
  • battery energy storage system
  • battery-energy storage
  • boost converter
  • Cloud computing
  • Control Strategies
  • coordinated control
  • coordination control
  • coupled oscillators
  • DC-AC power converters
  • demand response
  • digital signal processor (DSP) TMS320F28335
  • discontinuous conduction mode
  • discontinuous operation mode
  • distorted grid
  • distributed generation
  • doubly-fed induction generator
  • droop control
  • duty-ratio constraints
  • dynamic modeling
  • electric vehicle
  • electrical power generation
  • electricity price
  • energy
  • Energy Internet
  • energy router
  • Energy Storage
  • error
  • experiment
  • facts devices
  • failure zone
  • frequency regulation
  • generator speed control
  • governor
  • grid support function
  • grid synchronization
  • grid-connected
  • grid-connected converter
  • grid-connected inverter
  • hardware in the loop (HIL)
  • impedance analysis
  • impedance emulation
  • impedance reshaping
  • improved additional frequency control
  • improved-VSG (virtual synchronous generator)
  • inertia
  • inertia and damping characteristics
  • internal model
  • inverter
  • LCL filter
  • linear quadratic regulator
  • low inertia
  • maximum power point tracking
  • microgrid
  • microgrid (MG)
  • microgrids
  • modular multilevel converter
  • Modules
  • multi-energy complementary
  • multi-input single output (MISO)
  • multilevel power converter
  • multiple VSGs
  • multiport converter (MPC)
  • multivariate linear regression
  • n/a
  • notch filter
  • Opal-RT Technologies®
  • open circuit voltage
  • operation optimization
  • organic Rankine cycle
  • oscillation mitigation
  • oscillation suppression
  • parallel inverters
  • peak-current-mode control
  • permanent magnet synchronous generator (PMSG)
  • perturb and observe
  • perturbation frequency
  • phase shifted
  • phase space reconstruction
  • phase-locked loop (PLL)
  • photovoltaic
  • photovoltaic generators
  • photovoltaic systems
  • PLL
  • power converters
  • Power electronics
  • power grid
  • power matching
  • power ripple elimination
  • power-hardware-in- the-loop
  • PV
  • renewable energy
  • renewable power system
  • resonant controller
  • ROCOF
  • second-life battery
  • selective harmonic mitigation
  • short-circuit fault
  • single ended primary inductor converter (SEPIC)
  • Sliding mode control
  • small-signal and transient stability
  • soft switching
  • source and load impedance
  • speed control
  • SPWM
  • Stability
  • stability analysis
  • state-of-charge balancing
  • static compensator
  • static frequency characteristics
  • step size
  • SVM
  • Synchronization
  • synchronverter
  • THD
  • thermoelectric generator
  • time series
  • Transient Dynamics
  • turbine and generator
  • two-stage photovoltaic power
  • type-4 wind turbine
  • unbalanced power grid
  • variable coefficient regulation
  • variable power tracking control
  • virtual admittance
  • virtual impedance
  • virtual synchronous generator
  • voltage cancellation
  • voltage-type control
  • VSC
  • washout filter
  • weak grid
  • wind energy system
  • wind power prediction

Links

DOI: 10.3390/books978-3-03921-045-9

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