IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 05/2008, Volume 55, Issue 5, pp. 1933 - 1942
In the last few years, interest in multiphase converter technology has increased due to the benefits of using more than three phases in drive applications....
Space vector pulse width modulation | multilevel multiphase converter | Topology | Pulse modulation | Computational complexity | modulation algorithm | Pulse width modulation converters | Space technology | Field-programmable gate array (FPGA) | Voltage | space vector pulsewidth modulation (SVPWM) | Hardware | Field programmable gate arrays | Testing | Space vector pulsewidth modulation (SVPWM) | Multilevel multiphase converter | Modulation algorithm | CONVERTERS | INSTRUMENTS & INSTRUMENTATION | MACHINE | MOTORS | INVERTER | field-programmable gate array (FPGA) | DRIVE | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Usage | Research | Electric current converters | Power converters | Analysis | Digital integrated circuits | Studies | Algorithms | Electric potential | Mathematical analysis | Multiphase | Modulation | Multilevel | Converters | Pulse duration modulation
Space vector pulse width modulation | multilevel multiphase converter | Topology | Pulse modulation | Computational complexity | modulation algorithm | Pulse width modulation converters | Space technology | Field-programmable gate array (FPGA) | Voltage | space vector pulsewidth modulation (SVPWM) | Hardware | Field programmable gate arrays | Testing | Space vector pulsewidth modulation (SVPWM) | Multilevel multiphase converter | Modulation algorithm | CONVERTERS | INSTRUMENTS & INSTRUMENTATION | MACHINE | MOTORS | INVERTER | field-programmable gate array (FPGA) | DRIVE | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Usage | Research | Electric current converters | Power converters | Analysis | Digital integrated circuits | Studies | Algorithms | Electric potential | Mathematical analysis | Multiphase | Modulation | Multilevel | Converters | Pulse duration modulation
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 10/2006, Volume 53, Issue 5, pp. 1631 - 1639
Multilevel inverters are increasingly being used in high-power medium voltage applications due to their superior performance compared to two-level inverters....
Space vector pulse width modulation | Multilevel inverter | Power system harmonics | Control systems | Topology | Pulse modulation | Equations | Pulse width modulation inverters | two-level inverter | Signal processing algorithms | Medium voltage | space vector pulsewidth modulation (SVPWM) | switching state | Pulse inverters | neutral point clamped (NPC) | Space vector pulsewidth modulation (SVPWM) | Neutral point clamped (NPC) | Switching state | Two-level inverter | VOLTAGE | INSTRUMENTS & INSTRUMENTATION | multilevel inverter | 3-LEVEL INVERTERS | MODULATION | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Design and construction | Vector analysis | Analysis | Electric potential | Mathematical analysis | Modulation | Multilevel | Voltage | Inverters | Vectors (mathematics) | Pulse duration modulation
Space vector pulse width modulation | Multilevel inverter | Power system harmonics | Control systems | Topology | Pulse modulation | Equations | Pulse width modulation inverters | two-level inverter | Signal processing algorithms | Medium voltage | space vector pulsewidth modulation (SVPWM) | switching state | Pulse inverters | neutral point clamped (NPC) | Space vector pulsewidth modulation (SVPWM) | Neutral point clamped (NPC) | Switching state | Two-level inverter | VOLTAGE | INSTRUMENTS & INSTRUMENTATION | multilevel inverter | 3-LEVEL INVERTERS | MODULATION | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Design and construction | Vector analysis | Analysis | Electric potential | Mathematical analysis | Modulation | Multilevel | Voltage | Inverters | Vectors (mathematics) | Pulse duration modulation
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 8/2019, pp. 1 - 1
The space vector pulse width modulation (PWM) (SVPWM) techniques enhance the performance of multilevel multiphase inverters. With multilevel (three-phase)...
space vector PWM (SVPWM) | multiphase drive | voltage source inverter (VSI) | field-programmable gate array (FPGA) | carrier-based pulse width modulation (PWM) (CBPWM)
space vector PWM (SVPWM) | multiphase drive | voltage source inverter (VSI) | field-programmable gate array (FPGA) | carrier-based pulse width modulation (PWM) (CBPWM)
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 10/2009, Volume 24, Issue 10, pp. 2379 - 2390
Multiphase machines are nowadays considered for high-power variable-speed drive applications due to numerous advantages that they offer when compared to their...
Space vector pulse width modulation | space vector | Power electronics | Hybrid electric vehicles | Voltage control | Carrier-based | Pulse width modulation inverters | Analytical models | Stator windings | pulsewidth modulation | voltage source inverter | Frequency | five-phase | Pulse inverters | Machine windings | Voltage source inverter | Five-phase | Space vector | Pulsewidth modulation | PULSE-WIDTH MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Carriers | Electric potential | Mathematical analysis | Multiphase | Modulation | Voltage | Vectors (mathematics) | Pulse duration modulation
Space vector pulse width modulation | space vector | Power electronics | Hybrid electric vehicles | Voltage control | Carrier-based | Pulse width modulation inverters | Analytical models | Stator windings | pulsewidth modulation | voltage source inverter | Frequency | five-phase | Pulse inverters | Machine windings | Voltage source inverter | Five-phase | Space vector | Pulsewidth modulation | PULSE-WIDTH MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Carriers | Electric potential | Mathematical analysis | Multiphase | Modulation | Voltage | Vectors (mathematics) | Pulse duration modulation
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 03/2009, Volume 56, Issue 3, pp. 792 - 804
Multilevel multiphase technology combines the benefits of multilevel converters and multiphase machines. Nevertheless, new modulation techniques must be...
Space vector pulse width modulation | Switching converters | switching state redundancy | Topology | Computational complexity | multiphase machine | Pulse width modulation converters | Space technology | Field-programmable gate array (FPGA) | Voltage | multilevel converter | space vector pulsewidth modulation (SVPWM) | Hardware | Field programmable gate arrays | Testing | Space vector pulsewidth modulation (SVPWM) | Multiphase machine | Multilevel converter | Switching state redundancy | CONVERTERS | TOPOLOGIES | DRIVES | PULSE-WIDTH MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | INVERTERS | INSTRUMENTS & INSTRUMENTATION | ELECTRIC VEHICLES | INDUCTION-MOTOR | AUTOMATION & CONTROL SYSTEMS | Pulse modulation (Electronics) | Reports | Electric current converters | Multilevel analysis | Analysis | Algorithms | Multiphase | Redundancy | Modulation | Multilevel | Converters | Pulse duration modulation | Switching
Space vector pulse width modulation | Switching converters | switching state redundancy | Topology | Computational complexity | multiphase machine | Pulse width modulation converters | Space technology | Field-programmable gate array (FPGA) | Voltage | multilevel converter | space vector pulsewidth modulation (SVPWM) | Hardware | Field programmable gate arrays | Testing | Space vector pulsewidth modulation (SVPWM) | Multiphase machine | Multilevel converter | Switching state redundancy | CONVERTERS | TOPOLOGIES | DRIVES | PULSE-WIDTH MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | INVERTERS | INSTRUMENTS & INSTRUMENTATION | ELECTRIC VEHICLES | INDUCTION-MOTOR | AUTOMATION & CONTROL SYSTEMS | Pulse modulation (Electronics) | Reports | Electric current converters | Multilevel analysis | Analysis | Algorithms | Multiphase | Redundancy | Modulation | Multilevel | Converters | Pulse duration modulation | Switching
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 03/2018, Volume 33, Issue 3, pp. 2630 - 2642
In this paper, the properties and operation of the virtual-space-vector pulse-width modulation (PWM) for a three-level neutral-point-clamped inverter with...
Space vector pulse width modulation | virtual-space-vector PWM (VSVPWM) | Reactive power | Pulse-width modulation (PWM) | Capacitors | Inverters | Voltage control | three-level neutral-point-clamped inverter (3L-NPC) | TRACTION | VOLTAGE-BALANCING ALGORITHM | INJECTION | STRATEGY | DISCONTINUOUS PWM | SVPWM | MODULATION | CONVERTER | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse duration modulation | Links
Space vector pulse width modulation | virtual-space-vector PWM (VSVPWM) | Reactive power | Pulse-width modulation (PWM) | Capacitors | Inverters | Voltage control | three-level neutral-point-clamped inverter (3L-NPC) | TRACTION | VOLTAGE-BALANCING ALGORITHM | INJECTION | STRATEGY | DISCONTINUOUS PWM | SVPWM | MODULATION | CONVERTER | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse duration modulation | Links
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 05/2009, Volume 56, Issue 5, pp. 1649 - 1656
This paper proposes a generalized method for the generation of space vector pulsewidth modulation (SVPWM) signals for multilevel inverters. In the proposed...
Space vector pulse width modulation | Multilevel inverter | reverse mapping | Table lookup | open-end winding | Pulse modulation | Pulse width modulation inverters | Pulse generation | Space technology | Voltage | space vector pulsewidth modulation (SVPWM) | Signal generators | Pulse inverters | Power engineering and energy | Open-end winding | Space vector pulsewidth modulation (SVPWM) | Windings | Switches | Pulse width modulation | Distance measurement | Inverters | Reverse mapping | Vectors | CONVERTERS | ALGORITHM | INDUCTION-MOTOR DRIVE | ENGINEERING, ELECTRICAL & ELECTRONIC | MODE VOLTAGE ELIMINATION | INSTRUMENTS & INSTRUMENTATION | MULTILEVEL INVERTERS | SWITCHING-STATE REDUNDANCY | 5-LEVEL INVERTER | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse-duration modulation | Usage | Algorithms | Electric inverters | Design and construction | Methods | Mathematical analysis | Modulation | Multilevel | Vectors (mathematics) | Pulse duration modulation | Switching
Space vector pulse width modulation | Multilevel inverter | reverse mapping | Table lookup | open-end winding | Pulse modulation | Pulse width modulation inverters | Pulse generation | Space technology | Voltage | space vector pulsewidth modulation (SVPWM) | Signal generators | Pulse inverters | Power engineering and energy | Open-end winding | Space vector pulsewidth modulation (SVPWM) | Windings | Switches | Pulse width modulation | Distance measurement | Inverters | Reverse mapping | Vectors | CONVERTERS | ALGORITHM | INDUCTION-MOTOR DRIVE | ENGINEERING, ELECTRICAL & ELECTRONIC | MODE VOLTAGE ELIMINATION | INSTRUMENTS & INSTRUMENTATION | MULTILEVEL INVERTERS | SWITCHING-STATE REDUNDANCY | 5-LEVEL INVERTER | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse-duration modulation | Usage | Algorithms | Electric inverters | Design and construction | Methods | Mathematical analysis | Modulation | Multilevel | Vectors (mathematics) | Pulse duration modulation | Switching
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 05/2016, Volume 63, Issue 5, pp. 2734 - 2745
Arm voltage and submodule (SM) capacitor voltage balancing is a key factor for the safe and reliable operation of modular multilevel converters (MMCs). The arm...
Space vector pulse width modulation | Capacitors | three-level flying capacitor (3L-FC) | Switches | Topology | Modular multilevel converter (MMC) | voltage balancing | Voltage control | space-vector pulse-width modulation (PWM) | Industrial electronics | Pulse-duration modulation | Usage | Research | Electric potential | Computer simulation | Modulation | Multilevel | Voltage | Metal matrix composites | Modular
Space vector pulse width modulation | Capacitors | three-level flying capacitor (3L-FC) | Switches | Topology | Modular multilevel converter (MMC) | voltage balancing | Voltage control | space-vector pulse-width modulation (PWM) | Industrial electronics | Pulse-duration modulation | Usage | Research | Electric potential | Computer simulation | Modulation | Multilevel | Voltage | Metal matrix composites | Modular
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 09/2016, Volume 31, Issue 9, pp. 6428 - 6441
A novel synchronized space-vector pulsewidth modulation (SSVPWM) strategy is proposed for three-level inverters, which focuses on improving the output...
Switching frequency | Switches | Three level voltage source inverters | Pulse width modulation | Inverters | Harmonic distortion | weighted total harmonic distortion (THD) | Synchronization | synchronized space vector pulsewidth modulation | three-level voltage-source inverters | synchronized space-vector pulsewidth modulation (SSVPWM) | INDUSTRIAL APPLICATIONS | DESIGN | MULTILEVEL CONVERTERS | ALGORITHM | INDUCTION-MOTOR DRIVE | PULSE-WIDTH MODULATION | STRATEGIES | ENGINEERING, ELECTRICAL & ELECTRONIC | INVERTERS | OPERATION | CARRIER-BASED PWM | Pulse-duration modulation | Usage | Simulation methods | Segmentation | Mathematical analysis | Modulation | Waveforms | Strategy | Pulse duration modulation | Switching
Switching frequency | Switches | Three level voltage source inverters | Pulse width modulation | Inverters | Harmonic distortion | weighted total harmonic distortion (THD) | Synchronization | synchronized space vector pulsewidth modulation | three-level voltage-source inverters | synchronized space-vector pulsewidth modulation (SSVPWM) | INDUSTRIAL APPLICATIONS | DESIGN | MULTILEVEL CONVERTERS | ALGORITHM | INDUCTION-MOTOR DRIVE | PULSE-WIDTH MODULATION | STRATEGIES | ENGINEERING, ELECTRICAL & ELECTRONIC | INVERTERS | OPERATION | CARRIER-BASED PWM | Pulse-duration modulation | Usage | Simulation methods | Segmentation | Mathematical analysis | Modulation | Waveforms | Strategy | Pulse duration modulation | Switching
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 12/2016, Volume 31, Issue 12, pp. 8151 - 8161
Switching common-mode voltage (CMV) generated by the pulse width modulation (PWM) of the inverter causes common-mode currents, which lead to motor bearing...
Space vector pulse width modulation | Common-mode voltage elimination | Windings | Switches | space-vector pulse width modulation (PWM) | Inverters | Topology | multiphase drive | voltage source inverter (VSI) | field-programmable gate array (FPGA) | Voltage source inverter (VSI) | SINGLE | REDUCTION | BEARING CURRENTS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Research | Electromagnetic interference | Reorganization and restructuring | Digital integrated circuits
Space vector pulse width modulation | Common-mode voltage elimination | Windings | Switches | space-vector pulse width modulation (PWM) | Inverters | Topology | multiphase drive | voltage source inverter (VSI) | field-programmable gate array (FPGA) | Voltage source inverter (VSI) | SINGLE | REDUCTION | BEARING CURRENTS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Research | Electromagnetic interference | Reorganization and restructuring | Digital integrated circuits
Journal Article
11.
Full Text
Space-Vector PWM With Reduced Common-Mode Voltage for Five-Phase Induction Motor Drives
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 10/2013, Volume 60, Issue 10, pp. 4159 - 4168
The growing interest in multiphase electrical drives has required the extension of control schemes and modulation techniques already well known for three-phase...
Space vector pulse width modulation | five-phase induction machines | multiphase systems | Switching frequency | Switches | Vectors | Common-mode voltage (CMV) | Standards | space-vector pulse width modulation (SVPWM) | SCHEME | TORQUE CONTROL | INSTRUMENTS & INSTRUMENTATION | REDUCTION | SOURCE INVERTERS | ALGORITHM | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Harmonic functions | Induction electric motors | Pulse-duration modulation | Usage | Innovations | Voltage | Studies | Electric potential | Reduction | Multiphase | Modulation | Distortion | Strategy | Pulse duration modulation
Space vector pulse width modulation | five-phase induction machines | multiphase systems | Switching frequency | Switches | Vectors | Common-mode voltage (CMV) | Standards | space-vector pulse width modulation (SVPWM) | SCHEME | TORQUE CONTROL | INSTRUMENTS & INSTRUMENTATION | REDUCTION | SOURCE INVERTERS | ALGORITHM | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Harmonic functions | Induction electric motors | Pulse-duration modulation | Usage | Innovations | Voltage | Studies | Electric potential | Reduction | Multiphase | Modulation | Distortion | Strategy | Pulse duration modulation
Journal Article
12.
Full Text
Capacitor Voltage Balancing of Flying Capacitor Multilevel Converters by Space Vector PWM
IEEE Transactions on Power Delivery, ISSN 0885-8977, 07/2012, Volume 27, Issue 3, pp. 1154 - 1161
Proper operation of a multilevel flying capacitor converter (FCC) necessitates a closed-loop voltage balancing strategy. This paper proposes a space vector...
Support vector machines | Reactive power | Capacitors | space vector modulation (SVM) | FCC | Switches | multilevel converter | Vectors | Capacitor voltage balancing | Voltage control | INVERTERS | MOTOR DRIVE | MULTICELL CONVERTERS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric current converters | Voltage | Equipment and supplies | Research | Methods | Electric properties
Support vector machines | Reactive power | Capacitors | space vector modulation (SVM) | FCC | Switches | multilevel converter | Vectors | Capacitor voltage balancing | Voltage control | INVERTERS | MOTOR DRIVE | MULTICELL CONVERTERS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric current converters | Voltage | Equipment and supplies | Research | Methods | Electric properties
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 11/2017, Volume 64, Issue 11, pp. 8396 - 8405
A space vector pulse-width modulation (SVPWM) algorithm for a three-level symmetrical six-phase drive, based on a vector space decomposition approach, is, for...
Space vector pulse width modulation | Algorithm design and analysis | Legged locomotion | space vector PWM (SVPWM) | Switches | Harmonic analysis | Multilevel inverters | Inverters | six-phase | vector space decomposition (VSD) | multiphase drives | CONVERTERS | ALGORITHM | DECOMPOSITION | ENGINEERING, ELECTRICAL & ELECTRONIC | INSTRUMENTS & INSTRUMENTATION | VOLTAGE-SOURCE INVERTERS | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse-duration modulation | Electric driving | Usage | Algorithms | Design and construction | Electric potential | Induction motors | Computer simulation | Waveforms | Converters | Switching sequences | Harmonic distortion | Pulse duration modulation | Modularity
Space vector pulse width modulation | Algorithm design and analysis | Legged locomotion | space vector PWM (SVPWM) | Switches | Harmonic analysis | Multilevel inverters | Inverters | six-phase | vector space decomposition (VSD) | multiphase drives | CONVERTERS | ALGORITHM | DECOMPOSITION | ENGINEERING, ELECTRICAL & ELECTRONIC | INSTRUMENTS & INSTRUMENTATION | VOLTAGE-SOURCE INVERTERS | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse-duration modulation | Electric driving | Usage | Algorithms | Design and construction | Electric potential | Induction motors | Computer simulation | Waveforms | Converters | Switching sequences | Harmonic distortion | Pulse duration modulation | Modularity
Journal Article
IEEE Transactions on Industrial Informatics, ISSN 1551-3203, 05/2013, Volume 9, Issue 2, pp. 609 - 619
Multilevel inverter supplied multiphase variable-speed drive systems have in recent times started attracting more attention, due to various advantages that...
Space vector pulse width modulation | space vector PWM | Carrier-based pulsewidth modulation (PWM) | multilevel inverters | Switches | Vectors | Inverters | Topology | multiphase machines | Multiphase machines | Multilevel inverters | Space vector PWM | CONVERTERS | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | DRIVES | ALGORITHM | ENGINEERING, INDUSTRIAL | MODULATION | AUTOMATION & CONTROL SYSTEMS | Studies | Electric power | Electric potential | Algorithms | Mathematical analysis | Voltage | Vectors (mathematics) | Pulse duration modulation | Complexity
Space vector pulse width modulation | space vector PWM | Carrier-based pulsewidth modulation (PWM) | multilevel inverters | Switches | Vectors | Inverters | Topology | multiphase machines | Multiphase machines | Multilevel inverters | Space vector PWM | CONVERTERS | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | DRIVES | ALGORITHM | ENGINEERING, INDUSTRIAL | MODULATION | AUTOMATION & CONTROL SYSTEMS | Studies | Electric power | Electric potential | Algorithms | Mathematical analysis | Voltage | Vectors (mathematics) | Pulse duration modulation | Complexity
Journal Article
IEEE Transactions on Industry Applications, ISSN 0093-9994, 03/2012, Volume 48, Issue 2, pp. 697 - 707
Variable-speed multiphase (more than three phases) drive systems are seen as serious contenders to the existing three-phase drives due to their distinct...
pulsewidth modulation (PWM) | space vector | Switches | Pulse width modulation | Aerospace electronics | Vectors | Inverters | Five-phase | matrix converter | Matrix converters | ENGINEERING, MULTIDISCIPLINARY | MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Power converters | Pulse-duration modulation | Usage | Electric driving | Energy use | Circuit design | Equipment and supplies | Models | Design and construction | Methods
pulsewidth modulation (PWM) | space vector | Switches | Pulse width modulation | Aerospace electronics | Vectors | Inverters | Five-phase | matrix converter | Matrix converters | ENGINEERING, MULTIDISCIPLINARY | MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Power converters | Pulse-duration modulation | Usage | Electric driving | Energy use | Circuit design | Equipment and supplies | Models | Design and construction | Methods
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 11/2011, Volume 58, Issue 11, pp. 5130 - 5141
In this paper, two space-vector-based pulsewidth modulation (PWM) (SVPWM) strategies named equal- and proportional-duty SVPWMs are described, which are used to...
Space vector pulse width modulation | Induction motors | Four-level inverter | waveform symmetries | Inverters | open-end winding induction motor | space-vector modulation | unequal dc-link voltages | INVERTERS | INSTRUMENTS & INSTRUMENTATION | MODULATION TECHNIQUE | PLACEMENT | CARRIER-BASED PWM | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Induction electric motors | Technology application | Pulse-duration modulation | Usage | Electric inverters | Innovations | Voltage | Equivalent circuits | Electric potential | Winding | Waveforms | Strategy | Pulse duration modulation | Symmetry
Space vector pulse width modulation | Induction motors | Four-level inverter | waveform symmetries | Inverters | open-end winding induction motor | space-vector modulation | unequal dc-link voltages | INVERTERS | INSTRUMENTS & INSTRUMENTATION | MODULATION TECHNIQUE | PLACEMENT | CARRIER-BASED PWM | AUTOMATION & CONTROL SYSTEMS | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Induction electric motors | Technology application | Pulse-duration modulation | Usage | Electric inverters | Innovations | Voltage | Equivalent circuits | Electric potential | Winding | Waveforms | Strategy | Pulse duration modulation | Symmetry
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 04/2017, Volume 64, Issue 4, pp. 2689 - 2699
This paper presents a random forest (RF) regression based implementation of space vector pulse width modulation (SVPWM) for a two-level inverter to improve the...
Space vector pulse width modulation | artificial neural network (ANN) | space vector pulse width modulation (SVPWM) | Switches | Artificial neural networks | Inverters | backtracking search algorithm (BSA) | induction motor (IM) | Radio frequency | Adaptive neuro fuzzy inference system (ANFIS) | Vegetation | random forest (RF) regression | inverter controller | SVPWM ALGORITHM | TIME | ENGINEERING, ELECTRICAL & ELECTRONIC | SCHEME | INSTRUMENTS & INSTRUMENTATION | IMAGE | INTEGRATION | MODULATION | AUTOMATION & CONTROL SYSTEMS | Induction electric motors | Neural networks | Research | Damping | Adaptive systems | Induction motors | Computer simulation | Search algorithms | Modularity | Robust control | Fuzzy logic | Robustness (mathematics) | Performance enhancement | Parameter robustness | Pulse duration modulation | Space vector modulation | Fuzzy systems
Space vector pulse width modulation | artificial neural network (ANN) | space vector pulse width modulation (SVPWM) | Switches | Artificial neural networks | Inverters | backtracking search algorithm (BSA) | induction motor (IM) | Radio frequency | Adaptive neuro fuzzy inference system (ANFIS) | Vegetation | random forest (RF) regression | inverter controller | SVPWM ALGORITHM | TIME | ENGINEERING, ELECTRICAL & ELECTRONIC | SCHEME | INSTRUMENTS & INSTRUMENTATION | IMAGE | INTEGRATION | MODULATION | AUTOMATION & CONTROL SYSTEMS | Induction electric motors | Neural networks | Research | Damping | Adaptive systems | Induction motors | Computer simulation | Search algorithms | Modularity | Robust control | Fuzzy logic | Robustness (mathematics) | Performance enhancement | Parameter robustness | Pulse duration modulation | Space vector modulation | Fuzzy systems
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 04/2018, Volume 33, Issue 4, pp. 3192 - 3203
In voltage-source inverters, it is necessary to add the dead time between gating signals of the upper and lower switches to prevent short circuit in a phase...
Support vector machines | Current-source inverter (CSI) | Reactive power | Modulation | Switches | harmonic distortion | Harmonic analysis | Inverters | overlap-time compensation | Inductors | space-vector modulation (SVM) | VOLTAGE | HARMONIC PERFORMANCE | SVM | CURRENT-SOURCE CONVERTERS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Usage | Research | Electric inverters | Electric potential | Commutation | Circuits | Short circuits | Compensation | Dwell time | Signal processing | Harmonic distortion | Current sources | Superposition (mathematics)
Support vector machines | Current-source inverter (CSI) | Reactive power | Modulation | Switches | harmonic distortion | Harmonic analysis | Inverters | overlap-time compensation | Inductors | space-vector modulation (SVM) | VOLTAGE | HARMONIC PERFORMANCE | SVM | CURRENT-SOURCE CONVERTERS | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Usage | Research | Electric inverters | Electric potential | Commutation | Circuits | Short circuits | Compensation | Dwell time | Signal processing | Harmonic distortion | Current sources | Superposition (mathematics)
Journal Article
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 02/2011, Volume 58, Issue 2, pp. 465 - 475
A multilevel multiphase space vector pulsewidth modulation (SVPWM) algorithm has been introduced recently, in which the reference is separated into an integer...
Space vector pulse width modulation | Switching converters | Multidimensional systems | space vector PWM (SVPWM) | multifrequency pulsewidth modulation (PWM) | multiphase voltage-source converter | Aircraft propulsion | Pulse width modulation inverters | Induction motor drives | Pulse width modulation converters | Voltage | Permission | Computational efficiency | Modulation index range | DESIGN | ENGINEERING, ELECTRICAL & ELECTRONIC | INDUCTION-MOTOR DRIVES | SCHEME | INSTRUMENTS & INSTRUMENTATION | VOLTAGE-SOURCE INVERTERS | ELECTRIC VEHICLES | MACHINE | 5-PHASE | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse modulation (Electronics) | Analysis | Algorithms | Studies | Mathematical analysis | Multiphase | Modulation | Multilevel | Inverters | Vectors (mathematics) | Pulse duration modulation
Space vector pulse width modulation | Switching converters | Multidimensional systems | space vector PWM (SVPWM) | multifrequency pulsewidth modulation (PWM) | multiphase voltage-source converter | Aircraft propulsion | Pulse width modulation inverters | Induction motor drives | Pulse width modulation converters | Voltage | Permission | Computational efficiency | Modulation index range | DESIGN | ENGINEERING, ELECTRICAL & ELECTRONIC | INDUCTION-MOTOR DRIVES | SCHEME | INSTRUMENTS & INSTRUMENTATION | VOLTAGE-SOURCE INVERTERS | ELECTRIC VEHICLES | MACHINE | 5-PHASE | MODULATION | AUTOMATION & CONTROL SYSTEMS | Pulse modulation (Electronics) | Analysis | Algorithms | Studies | Mathematical analysis | Multiphase | Modulation | Multilevel | Inverters | Vectors (mathematics) | Pulse duration modulation
Journal Article
IEEE Transactions on Power Electronics, ISSN 0885-8993, 03/2007, Volume 22, Issue 2, pp. 517 - 526
This paper proposes a simple space vector pulsewidth modulation algorithm for a multilevel inverter for operation in the overmodulation range. The proposed...
Space vector pulse width modulation | Capacitors | overmodulation | Cascaded H-bridge inverter | Control systems | Topology | Voltage control | Pulse width modulation inverters | multilevel inverter | modulation index | Digital signal processing | space vector pulsewidth modulation (SVPWM) | Pulse inverters | Power generation | Signal mapping | Modulation index | Space vector pulsewidth modulation (SVPWM) | Overmodulation | Multilevel inverter | CONVERTERS | DRIVES | cascaded H-bridge inverter | MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Design and construction | Vector analysis | Algorithms | Mathematical analysis | Modulation | Multilevel | Inverters | Gating and risering | Vectors (mathematics) | Pulse duration modulation
Space vector pulse width modulation | Capacitors | overmodulation | Cascaded H-bridge inverter | Control systems | Topology | Voltage control | Pulse width modulation inverters | multilevel inverter | modulation index | Digital signal processing | space vector pulsewidth modulation (SVPWM) | Pulse inverters | Power generation | Signal mapping | Modulation index | Space vector pulsewidth modulation (SVPWM) | Overmodulation | Multilevel inverter | CONVERTERS | DRIVES | cascaded H-bridge inverter | MODULATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Pulse-duration modulation | Electric inverters | Design and construction | Vector analysis | Algorithms | Mathematical analysis | Modulation | Multilevel | Inverters | Gating and risering | Vectors (mathematics) | Pulse duration modulation
Journal Article
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