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01/2019, ISBN 9783038979753
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
01/2019, ISBN 3039210211
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
SAE technical paper series, Volume 2011-01-0396.
To realize better fuel economy benefits from transmissions, car makers have started the application of torque converter clutch control in second gear and... 
Electronic control systems | Torque converters | Automatic transmission clutches | Automatic transmissions
eJournal
SAE technical paper series, Volume 841151.
On lift-cranes, sluggish load response to operator commands using pneumatic controls prompted the development of an electro-hydraulic proportional pressure... 
Torque converters | Hydraulic systems | Electrohydraulics
eJournal
SAE technical paper series, Volume 950672.
The torque converter clutch slip control system adopted in the Toyota A541E automatic transaxle engages the torque converter clutch by applying a steady slip... 
Transaxles | Torque converters | Fuel economy | Simulation and modeling | Clutches
eJournal
SAE technical paper series, Volume 2009-01-0954.
The development of a robust feedback slip controller for a torque converter clutch (TCC) is presented in this paper. The dynamic behavior of the TCC is modeled... 
Transmissions | Electronic control systems | Torque converters
eJournal
SAE technical paper series, Volume 960432.
This paper presents and compares two approaches for the torque converter clutch slip control when the friction coefficient of the clutch has uncertainty. The... 
Electronic control systems | Torque converters | Vehicle performance | Clutches
eJournal
SAE technical paper series, Volume 850460.
If a torque converter clutch is allowed to slip to a minimal amount, engine torque can be transmitted through a transmission without torque variation problem,... 
Mathematical analysis | Parts | Torque converters | Clutches
eJournal
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 06/2009, Volume 56, Issue 6, pp. 1894 - 1905
Journal Article
SAE technical paper series, Volume 2013-01-0357.
According to the low efficiency of vehicle equipped with automotive transmission (AT) at launching conditions, the TCCs slip and lock up control technology was... 
Torque converters | Simulation and modeling | Clutches
eJournal
SAE technical paper series, Volume 2013-01-0357.
According to the low efficiency of vehicle equipped with automotive transmission (AT) at launching conditions, the TCCs slip and lock up control technology was... 
Torque converters | Simulation and modeling | Clutches
eJournal
Energies, ISSN 1996-1073, 01/2018, Volume 11, Issue 1, p. 120
Field oriented control (FOC), direct torque control (DTC) and finite set model predictive control (FS-MPC) are different strategies for high performance... 
Field oriented control | Model predictive control | Direct torque control | model predictive control | field oriented control | ENERGY & FUELS | DRIVES | direct torque control | Pulse duration | Torque | Mathematical models | Pulse duration modulation | Predictive control
Journal Article
IEEE Transactions on Industry Applications, ISSN 0093-9994, 09/2016, Volume 52, Issue 5, pp. 4050 - 4060
Recently, model-predictive torque control (MPTC) has been introduced as a powerful control method for induction motor drives. However, the weighting factor for... 
Torque | Torque control | Rotors | Flux control | induction motor (IM) drives | Stators | Predictive models | Cost function | Mathematical model | predictive control | torque control | MACHINES | ENGINEERING, MULTIDISCIPLINARY | MATRIX CONVERTER | RIPPLE | FREQUENCY | FCS-MPC | ENGINEERING, ELECTRICAL & ELECTRONIC | Induction electric motors | Research | Motors
Journal Article
SAE technical paper series, Volume 2002-01-0884.
The performance of a large-volume production torque converter is slightly different from those of development prototype due to the core leakage flow. The... 
CAD, CAM, and CAE | Powertrains | Computational fluid dynamics | Torque converters | Automatic transmissions
eJournal
IEEE Transactions on Power Electronics, ISSN 0885-8993, 12/2014, Volume 29, Issue 12, pp. 6593 - 6603
Journal Article
Journal of Field Robotics, ISSN 1556-4959, 05/2015, Volume 32, Issue 3, pp. 378 - 396
This paper discusses the actuator‐level control of Valkyrie, a new humanoid robot designed by NASA's Johnson Space Center in collaboration with several... 
SPACE | DESIGN | ROBOTICS | IMPEDANCE CONTROL | FLEXIBLE-JOINT ROBOTS | ROBONAUT | Energy consumption | Robotics industry | Actuators | Design and construction | Analysis | Robots | Control systems | Torque | Humanoid | Dynamics | Tracking errors | Disturbance observers | Dynamical systems
Journal Article
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