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harmonic analysis (5) 5
slim dc-link drive (5) 5
damping (4) 4
impedance (4) 4
mathematical model (4) 4
rectifiers (4) 4
active damping (3) 3
capacitors (3) 3
cogging torque (3) 3
harmonics (3) 3
load modeling (3) 3
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admittance (2) 2
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disturbance observer (2) 2
double layer capacitor models (2) 2
droop control (2) 2
dual three-phase permanent magnet synchronous motors (2) 2
dynamic pv model (2) 2
effect factors (2) 2
efficiency motor (2) 2
electric potential (2) 2
electric power (2) 2
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electric vehicles (2) 2
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engineering, electrical & electronic (2) 2
equivalent inductance (2) 2
expert systems (2) 2
extended kalman filter (2) 2
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Electronics (Switzerland), ISSN 2079-9292, 10/2018, Volume 7, Issue 10, p. 234
In this paper, a virtual positive impedance (VPI) based active damping control for a slim DC-link motor drive with 24 section space vector pulse width... 
Cogging torque | Total harmonic distortion | Slim DC-link drive | VPI active damping control | SINGLE-PHASE | SPACE-VECTOR MODULATION | MITIGATION | slim DC-link drive | cogging torque | total harmonic distortion | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Transactions on Industry Applications, ISSN 0093-9994, 07/2017, Volume 53, Issue 4, pp. 3814 - 3820
Journal Article
2018 20th European Conference on Power Electronics and Applications, EPE 2018 ECCE Europe, 10/2018
Conference Proceeding
2018 20th European Conference on Power Electronics and Applications (EPE'18 ECCE Europe), 09/2018, pp. 1 - P.9
Sensorless control is an effective method to increase the overall system reliability in adjustable speed drive and reduce the cost for a slim dc-link drive.... 
Damping | Europe | Sensorless control | Active damping | Stability analysis | Input admittance | Admittance | Mathematical model | Slim dc-link | Flux-observer | Load modeling
Conference Proceeding
2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia (IFEEC 2017 - ECCE Asia), 06/2017, pp. 2165 - 2170
In the conventional variable speed drive, the dc-link including the dc-choke and electrolytic capacitor is bulky with limited lifetime. The slim dc-link drive... 
Damping | Torque | active damping | harmonics | slim dc-link drive | Capacitors | Stability criteria | stabibility | Harmonic analysis | Impedance | Mathematical model | torque sensitivity
Conference Proceeding
2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia (IFEEC 2017 - ECCE Asia), 06/2017, pp. 382 - 387
The harmonic performance of the slim dc-link adjustable speed drives has shown good performance in some studies but poor in some others. The contradiction... 
Analytical models | slim dc-link drive | harmonic admittance | Rectifiers | Switches | Harmonic analysis | input harmonic analysis | Mathematical model | Impedance | harmonic state space | Load modeling
Conference Proceeding
2017 IEEE 26th International Symposium on Industrial Electronics (ISIE), 06/2017, pp. 303 - 308
One of the problems with slim dc-link adjustable speed drive is the difficulties to analyze the harmonic coupling when it is integrated into a multi-drive... 
Couplings | haramonic state space | Rectifiers | Power system harmonics | Harmonic analysis | slim dc-link dive | Mathematical model | harmonic coupling analysis | Time-domain analysis | Load modeling | multi-drive system | Harmonic coupling analysis | Multi-drive system | Haramonic state space | Slim dc-link dive
Conference Proceeding
2019, ISBN 9783039210206
Power electronics technology is still an emerging technology, and it has found its way into many applications, from renewable energy generation (i.e., wind... 
Q-factor | lithium-ion power battery pack | electromagnetic field (EMF) | expert systems | total harmonic distortion (THD) | current-fed inverter | rotor design | class-D amplifier | LCL-S topology | current switching ripple | system in package | energy storage modelling | smart micro-grid | embedded systems | equivalent inductance | SHIL | permanent magnet | static var generator (SVG) | permanent magnet synchronous motor (PMSM) | control strategy and algorithm | digital control | zero-voltage switching (ZVS) | SOC estimator | electric power | optimal design | electromagnetic field interference (EMI) | line frequency instability | analog phase control | five-phase permanent magnet synchronous machine | distribution generation | leakage inductance | adjacent two-phase open circuit fault (A2-Ph) | chaotic PWM | electric vehicles | CMOS chaotic circuit | series active filter | cascaded topology | total demand distortion | efficiency motor | triangular ramp generator | 4T analog MOS control | inductive coupling | induction machines | nanocrystalline core | semi-active bridge | multi-level control | simulation models | voltage source inverters (VSI) | battery management system BMS | voltage source converter | current control loops | droop control | particle swarm optimization | variable control gain | state of charge SoC | extended Kalman filter | transient control | multi-objective optimization | composite equalizer | converter | DHIL | five-leg voltage source inverter | axial flux machines | bifurcation | active receivers | field programmable gate array | Nyquist stability analysis | electric vehicle | static compensator | stability | common-mode inductor | support vector machines | electromagnetic compatibility | real-time simulation | passive equalization | matrix converters | wireless power transfer | digital phase control | compensation topology | volt-per-hertz control (scalar control) | switching losses | voltage control | hybrid converter | bidirectional converter | coupling factor | selective harmonic elimination method | power electronics | soft switching | optimization design | multilevel inverter | five-phase machine | phase-shift control | lithium-ion battery | voltage boost | VPI active damping control | parameter identification | electrical engineering communications | current control | battery management system | GaN cascode | single-switch | high-frequency modeling | synchronous motor | power quality | water purification | power factor correction (PFC) | composite active vectors modulation (CVM) | digital signal controller | line start | power density | hardware in loop | n/a | fault diagnosis | multi-level converter (MLC) | induction motor | dual three-phase (DTP) permanent magnet synchronous motors (PMSMs) | neural networks | electromagnetic interference filter | battery chargers | power converter | harmonics | multiphase space vector modulation | torque ripple | power factor correction | electrical drives | modular multilevel converter (MMC) | active power filter | double layer capacitor (DLC) models | PMSG | response time | resonator structure | floating-point | effect factors | DC-link voltage control | sliding mode control | phasor model technique | wireless power transfer (WPT) | slim DC-link drive | fault-tolerant control | lithium-ion batteries | DC-AC power converters | conducting angle determination (CAD) techniques | variable speed pumped storage system | impedance-based model | one cycle control | renewable energy sources | series-series compensation | cogging torque | active rectifiers | three-level boost converter (TLBC) | DC-link cascade H-bridge (DCLCHB) inverter | battery energy storage systems | filter | power management system | improved extended Kalman filter | dead-time compensation | disturbance observer | reference phase calibration | frequency locking | space vector pulse width modulation (SVPWM) | predictive controllers | nine switch converter | transmission line | spread-spectrum technique | energy storage | electromagnetic interference | renewable energy resources control | harmonic linearization | misalignment | plug-in hybrid electric vehicles | high level programing | DC power converters | nearest level modulation (NLM) | magnetic equivalent circuit | EMI filter | permanent-magnet machines | real-time emulation | switched capacitor | back EMF | fixed-point | DC converters | HF-link MPPT converter | condition monitoring | WPT standards | switching frequency | switching frequency modelling | high frequency switching power supply | field-programmable gate array | three-phase bridgeless rectifier | ice melting | hybrid power filter | PSpice | microgrid control | total harmonic distortion | grid-connected inverter | dynamic PV model | fuzzy | boost converter | SiC PV Supply | voltage doubling | nonlinear control | distributed control | power system operation and control | one phase open circuit fault (1-Ph) | direct torque control (DTC) | battery modeling | non-linear phenomena | frequency-domain analysis | advanced controllers | vector control | fixed-frequency double integral sliding-mode (FFDISM) | power converters | modulation index | DC-DC buck converter | small signal stability analysis | active equalization | voltage source inverter | hardware-in-the-loop | current source | synchronization | DC conversion | grid-connected VSI | synchronous generator | fault tolerant control
eBook
2019, ISBN 9783038979746
Power electronics technology is still an emerging technology, and it has found its way into many applications, from renewable energy generation (i.e., wind... 
Q-factor | lithium-ion power battery pack | electromagnetic field (EMF) | expert systems | total harmonic distortion (THD) | current-fed inverter | rotor design | class-D amplifier | LCL-S topology | current switching ripple | system in package | energy storage modelling | smart micro-grid | embedded systems | equivalent inductance | SHIL | permanent magnet | static var generator (SVG) | permanent magnet synchronous motor (PMSM) | control strategy and algorithm | digital control | zero-voltage switching (ZVS) | SOC estimator | electric power | optimal design | electromagnetic field interference (EMI) | line frequency instability | analog phase control | five-phase permanent magnet synchronous machine | distribution generation | leakage inductance | adjacent two-phase open circuit fault (A2-Ph) | chaotic PWM | electric vehicles | CMOS chaotic circuit | series active filter | cascaded topology | total demand distortion | efficiency motor | triangular ramp generator | 4T analog MOS control | inductive coupling | induction machines | nanocrystalline core | semi-active bridge | multi-level control | simulation models | voltage source inverters (VSI) | battery management system BMS | voltage source converter | current control loops | droop control | particle swarm optimization | variable control gain | state of charge SoC | extended Kalman filter | transient control | multi-objective optimization | composite equalizer | converter | DHIL | five-leg voltage source inverter | axial flux machines | bifurcation | active receivers | field programmable gate array | Nyquist stability analysis | electric vehicle | static compensator | stability | common-mode inductor | support vector machines | electromagnetic compatibility | real-time simulation | passive equalization | matrix converters | wireless power transfer | digital phase control | compensation topology | volt-per-hertz control (scalar control) | switching losses | voltage control | hybrid converter | bidirectional converter | coupling factor | selective harmonic elimination method | power electronics | soft switching | optimization design | multilevel inverter | five-phase machine | phase-shift control | lithium-ion battery | voltage boost | VPI active damping control | parameter identification | electrical engineering communications | current control | battery management system | GaN cascode | single-switch | high-frequency modeling | synchronous motor | power quality | water purification | power factor correction (PFC) | composite active vectors modulation (CVM) | digital signal controller | line start | power density | hardware in loop | n/a | fault diagnosis | multi-level converter (MLC) | induction motor | dual three-phase (DTP) permanent magnet synchronous motors (PMSMs) | neural networks | electromagnetic interference filter | battery chargers | power converter | harmonics | multiphase space vector modulation | torque ripple | power factor correction | electrical drives | modular multilevel converter (MMC) | active power filter | double layer capacitor (DLC) models | PMSG | response time | resonator structure | floating-point | effect factors | DC-link voltage control | sliding mode control | phasor model technique | wireless power transfer (WPT) | slim DC-link drive | fault-tolerant control | lithium-ion batteries | DC-AC power converters | conducting angle determination (CAD) techniques | variable speed pumped storage system | impedance-based model | one cycle control | renewable energy sources | series-series compensation | cogging torque | active rectifiers | three-level boost converter (TLBC) | DC-link cascade H-bridge (DCLCHB) inverter | battery energy storage systems | filter | power management system | improved extended Kalman filter | dead-time compensation | disturbance observer | reference phase calibration | frequency locking | space vector pulse width modulation (SVPWM) | predictive controllers | nine switch converter | transmission line | spread-spectrum technique | energy storage | electromagnetic interference | renewable energy resources control | harmonic linearization | misalignment | plug-in hybrid electric vehicles | high level programing | DC power converters | nearest level modulation (NLM) | magnetic equivalent circuit | EMI filter | permanent-magnet machines | real-time emulation | switched capacitor | back EMF | fixed-point | DC converters | HF-link MPPT converter | condition monitoring | WPT standards | switching frequency | switching frequency modelling | high frequency switching power supply | field-programmable gate array | three-phase bridgeless rectifier | ice melting | hybrid power filter | PSpice | microgrid control | total harmonic distortion | grid-connected inverter | dynamic PV model | fuzzy | boost converter | SiC PV Supply | voltage doubling | nonlinear control | distributed control | power system operation and control | one phase open circuit fault (1-Ph) | direct torque control (DTC) | battery modeling | non-linear phenomena | frequency-domain analysis | advanced controllers | vector control | fixed-frequency double integral sliding-mode (FFDISM) | power converters | modulation index | DC-DC buck converter | small signal stability analysis | active equalization | voltage source inverter | hardware-in-the-loop | current source | synchronization | DC conversion | grid-connected VSI | synchronous generator | fault tolerant control
eBook
IECON 2016 - 42nd Annual Conference of the IEEE Industrial Electronics Society, 10/2016, pp. 5001 - 5006
Compared with conventional dc-link drive, slim dc-link drive is expected to achieve lower cost and longer life time. However, harmonics distortion problem may... 
Damping | harmonics analysis | Resonant frequency | Bandwidth | multi slim dc-link drives | Harmonic analysis | Impedance | Admittance | Power harmonic filters | active damping control | Harmonics analysis | Multi slim dc-link drives | Active damping control
Conference Proceeding
2016 IEEE 16th International Conference on Environment and Electrical Engineering (EEEIC), 06/2016, pp. 1 - 6
Pulse Width Modulated AC drives equipped with small DC-link capacitor are becoming an attractive solution for electric drive applications with moderate... 
Damping | Frequency locked loops | Voltage measurement | reduced DC-link capacitor | Capacitors | Rectifiers | slim DC link drives | fluctuating DC-link voltage | voltage source inverter (VSI) | Phase locked loops | Oscillators | Electric potential | Pulse width | Compensation | Voltage | Electronics | Motors | Alternating current
Conference Proceeding
2014 International Symposium on Power Electronics, Electrical Drives, Automation and Motion, 06/2014, pp. 820 - 824
Brushless DC (BLDC) Motor is widely used in home appliance, robot, and vehicle industry due to the merits of high power density, low noise, and simple... 
Inductance | Torque | Brushless DC motors | BLDC Motor | Commutation | Current measurement | Slim type | Lead Angle | Efficiency Improvement
Conference Proceeding
Journal of Central South University, ISSN 2095-2899, 5/2015, Volume 22, Issue 5, pp. 1716 - 1724
An adaptive current compensation control for a single-sided linear induction motor (SLIM) with nonlinear disturbance observer was developed. First, to maintain... 
Engineering | current compensation | nonlinear disturbance observer (NDOB) | adaptive control | dynamical response | Engineering, general | Metallic Materials | single-sided linear induction motors (SLIMs) | SLIP FREQUENCY | METALLURGY & METALLURGICAL ENGINEERING
Journal Article
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