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Design and Control of Power Converters 2019



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Autore: de Azpeitia Manuel Arias Pérez Visualizza persona
Titolo: Design and Control of Power Converters 2019 Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica: 1 online resource (402 p.)
Soggetto topico: Technology: general issues
Soggetto non controllato: 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-AC converter
DC-DC converter
dc-link voltage balance control
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
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
Persona (resp. second.): de AzpeitiaManuel Arias Pérez
Sommario/riassunto: 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.
Titolo autorizzato: Design and Control of Power Converters 2019  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910557743103321
Lo trovi qui: Univ. Federico II
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