Engineering
Permanent Magnet Synchronous Motor
100%
Permanent Magnet
55%
Reluctance Motor
50%
Reconfiguration
41%
Circuit Faults
41%
Fault Tolerant Control
41%
Open Circuit
33%
Motor Drive
31%
Dynamic Response
30%
Finite Element Simulation
26%
Machine Design
25%
Resolvers
25%
Digital Conversion
25%
Predictive Control Model
25%
Link Capacitor
25%
Harmonics
23%
Permanent Magnet
23%
Copper Loss
22%
Synchronous Machine
22%
Voltage Vector
20%
Drive System
19%
Finite Element Method
19%
Simulation Result
19%
Current Harmonic
16%
Analytical Model
16%
Electric Vehicle
16%
Electric Machine
16%
Current Loop
16%
Three-Phase Inverter
16%
Space Vector
16%
Capacitor Voltage
16%
Magnet Flux
16%
Extended State Observer
16%
Flux Linkage
15%
Control Strategy
15%
Experimental Result
13%
Electric Drives
12%
Nonlinearity
12%
Dynamic Performance
11%
Frequency Signal
11%
Experimental Measurement
11%
Control System
10%
Load Torque
10%
Electrical Machine
10%
Power Density
10%
Original Transformation
8%
Transformation Matrix
8%
Filtration
8%
Experimental Investigation
8%
Comprehensive Review
8%
Keyphrases
Synchronous Reluctance Motor (SynRM)
38%
Machine Design
25%
Fault-tolerant Control
25%
Open-circuit Fault
25%
Synchronous Reluctance Motor Drives
25%
Polynomial Approximation
22%
Five-phase
19%
Maximum Torque per Ampere Control
16%
Surface-mounted Permanent Magnet Synchronous Motor (SPMSM)
16%
Reconfiguration
16%
PMSM Control
16%
Rational Fraction Polynomial
16%
Resolver-to-digital Converter
16%
PMASynRM
16%
Five-phase PMSM
16%
Copper Loss Reduction
16%
Scaling Criteria
16%
Homothetic
16%
Magnetic Saturation
16%
Capacitor Voltage
16%
Voltage Imbalance
16%
Four-switch Three-phase Inverter (FSTPI)
16%
Space Vector Pulse Width Modulation (SVPWM)
16%
Voltage Vector
16%
PMSM Drive
16%
DC-link Capacitor
16%
Minimum Loss
16%
Interior Permanent Magnet Synchronous Motor (IPMSM)
16%
Torque Ripple Compensation
16%
Torque Ripple
13%
Torque Fluctuation
13%
Maximum Torque per Ampere
13%
Cooling System
12%
Electric Drive
12%
Capacitors
12%
Finite Element Simulation
12%
Operating Conditions
11%
Supplementary Control
11%
Monic
11%
Newton-Raphson Method
11%
D-q Axis
11%
Five-phase Machine
10%
Control Method
9%
Third-order Harmonic
9%
Current Loop
9%
Response Control
8%
Stability Improvement
8%
Six-step Operation
8%
Number of Poles
8%
Smith Predictor
8%