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Design and Control of Power Converters 2019

Design and Control of Power Converters 2019

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In this book, 20 papers focused on different fields of power electronics are gathered. Approximately half of the papers are focused on different control issues and techniques, ranging from the computer-aided design of digital compensators to more specific approaches such as fuzzy or sliding control techniques. The rest of the papers are focused on the design of novel topologies. The fields in which these controls and topologies are applied are varied: MMCs, photovoltaic systems, supercapacitors and traction systems, LEDs, wireless power transfer, etc.

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Keywords

  • AC/AC converter
  • active clamp
  • adaptive hysteresis current control
  • binary particle swarm optimization (BPSO)
  • buck converter
  • bus converter
  • cascaded H-bridge (CHB)
  • circulating current
  • coil design
  • current-mode control
  • DC bus
  • dc-link voltage balance control
  • DC–AC converter
  • DC–DC converter
  • decoupling
  • design space
  • differential flatness
  • digital control
  • distributed power generation system (DPGS)
  • DPWM
  • dSPACE semi-physical verification
  • experimental verification
  • feedback loop control
  • frequency domain
  • fuzzy
  • fuzzy identification
  • fuzzy model predictive control
  • fuzzy modeling
  • gain crossover frequency
  • GaN-based inverter and converter
  • global best solution
  • grid-connected voltage source converters (GC-VSCs)
  • half-bridge current-source converters
  • harmonic injection
  • HIL Testbed
  • hybrid storage systems
  • Hybrid systems
  • hysteresis control
  • Inductive Power Transfer
  • Inductor–Capacitor–Diode
  • Inductor–Diode
  • inversion formulae
  • LED driver
  • light emitting diode (LED)
  • linear active disturbance rejection control
  • linear extended state observer
  • low frequency oscillation
  • magnetics design
  • matrix converter
  • MMC
  • model-based predictive current control (MBPCC)
  • modelling
  • MPPT
  • multilevel converter
  • networked power converters
  • nonisolated
  • nonlinear control
  • nonsingular terminal sliding mode control (NTSMC)
  • optimal gain
  • Pareto optimality
  • peak to average ratio (PTAR)
  • PFC converters
  • phase margin
  • photovoltaic power system
  • PLC
  • power control
  • power converters
  • power efficiency
  • power electronic converter
  • power electronic converters
  • power factor correction
  • proportional integral
  • proportional resonant
  • pulsating output current
  • PV-connected inverter
  • reactive power resources
  • reduced order generalized integrator (ROGI)
  • Reliability
  • single-phase system
  • sliding-mode control
  • SPPT
  • step-down
  • supercapacitors
  • supervisory controller
  • switched affine systems
  • switching converters
  • synchronous rectification
  • Technology, engineering, agriculture
  • Technology: general issues
  • three-port converter
  • total harmonic distortion (THD)
  • traction line-side converter (LSC)
  • two degrees of freedom
  • two-stage buck converter
  • vehicle-grid coupling system
  • virtual damping
  • voltage regulation
  • wireless power transfer
  • zeta inverter

Links

DOI: 10.3390/books978-3-0365-1564-9

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