Power Converters in Power Electronics

In recent years, power converters have played an important role in power electronics technology for different applications, such as renewable energy systems, electric vehicles, pulsed power generation, and biomedical sciences. Power converters, in the realm of power electronics, are becoming essenti...

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Year of Publication:2020
Language:English
Physical Description:1 electronic resource (354 p.)
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100 1 |a Nguyen, Minh-Khai  |4 edt 
245 1 0 |a Power Converters in Power Electronics 
260 |a Basel, Switzerland  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2020 
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520 |a In recent years, power converters have played an important role in power electronics technology for different applications, such as renewable energy systems, electric vehicles, pulsed power generation, and biomedical sciences. Power converters, in the realm of power electronics, are becoming essential for generating electrical power energy in various ways. This Special Issue focuses on the development of novel power converter topologies in power electronics. The topics of interest include, but are not limited to: Z-source converters; multilevel power converter topologies; switched-capacitor-based power converters; power converters for battery management systems; power converters in wireless power transfer techniques; the reliability of power conversion systems; and modulation techniques for advanced power converters. 
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650 7 |a History of engineering & technology  |2 bicssc 
653 |a current source converter 
653 |a power decoupling 
653 |a power ripple 
653 |a computational complexity 
653 |a direct power control 
653 |a finite control set model predictive control 
653 |a PI controllers 
653 |a space vector modulation 
653 |a three-level T-type inverter 
653 |a input current ripple 
653 |a voltage multiplier 
653 |a shoot through state 
653 |a quasi-switched boost inverter 
653 |a Z-source inverter 
653 |a transformerless 
653 |a SEPIC converter 
653 |a single phase 
653 |a cascaded H-bridge inverter 
653 |a three-phase inverter 
653 |a Z-source network 
653 |a quasi-switched-boost network 
653 |a shoot-through 
653 |a quasi-z-source inverter 
653 |a grid-tied 
653 |a leakage current 
653 |a power efficiency 
653 |a counter-based 
653 |a one-comparator 
653 |a PWFM 
653 |a PWM 
653 |a PFM 
653 |a dc converter 
653 |a full bridge converter 
653 |a zero voltage operation 
653 |a multilevel inverter 
653 |a Pulse Width Modulation 
653 |a minimal number of commutations 
653 |a state machine 
653 |a Neutral Point Clamped Converter 
653 |a power converters 
653 |a EMI 
653 |a intelligent control 
653 |a classical gate driver 
653 |a interference sources 
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653 |a electromagnetic compatibility (EMC) 
653 |a switching model power supply (SMPS) 
653 |a conducted emission 
653 |a parametric modeling method 
653 |a vector fitting algorithm 
653 |a full-power testing 
653 |a high-power 
653 |a individual phase 
653 |a operation test 
653 |a static synchronous compensator (STATCOM) 
653 |a bidirectional DC/DC converter (BDC) 
653 |a dual mode operation 
653 |a current sharing 
653 |a multiplexed modulation 
653 |a low-voltage and high-current 
653 |a Lyapunov algorithm 
653 |a current sharing control 
653 |a confluence plate 
653 |a state feedback linearization 
653 |a grid-connected inverter 
653 |a LCL filter 
653 |a inductive power transfer (IPT) 
653 |a three-bridge switching 
653 |a constant current (CC) 
653 |a constant voltage (CV) 
653 |a fixed frequency 
653 |a fractional order elements 
653 |a high-frequency switching 
653 |a wireless power transmission 
653 |a active balance circuit 
653 |a bi-directional converter 
653 |a lithium battery 
653 |a series-connected battery 
653 |a fast charging 
653 |a motor drives 
653 |a full-bridge Buck inverter 
653 |a DC motor 
653 |a mathematical model 
653 |a differential flatness 
653 |a time-varying duty cycle 
653 |a circuit simulation 
653 |a experimental validation 
653 |a current source inverter 
653 |a common-mode voltage 
653 |a diode clamped multilevel inverter 
653 |a flying capacitor multilevel inverter 
653 |a cascade H bridge multilevel inverter 
653 |a total harmonic distortion 
653 |a PWM control techniques 
653 |a PSCAD/MULTISIM simulation 
653 |a model predictive control (MPC) 
653 |a neutral-point clamped (NPC) inverter 
653 |a disturbance observer 
653 |a parameter uncertainty 
653 |a stability analysis 
653 |a power factor adjustment 
653 |a matrix rectifier 
653 |a peak-current-mode (PCM) control 
653 |a boost converter 
653 |a stability 
653 |a parameter perturbation 
653 |a target period orbit tracking 
653 |a space-vector pulse-width modulation 
653 |a common-mode voltage elimination 
653 |a quasi-switched boost 
653 |a impedance network 
653 |a add-on pulse charger 
653 |a quick charge 
653 |a pulse charging 
653 |a Li-ion battery 
653 |a full bridge (FB) 
653 |a modular multilevel dc-dc converters (MMDCs) 
653 |a zero-voltage switching (ZVS) 
653 |a zero-current switching (ZCS) 
653 |a Photovoltaics 
653 |a Z-Source 
653 |a Current-fed 
653 |a Medium-Frequency 
653 |a Power-Imbalance 
653 |a harmonic 
653 |a RPWM 
653 |a selective voltage harmonic elimination 
653 |a single-phase inverter 
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700 1 |a Nguyen, Minh-Khai  |4 oth 
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