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Hua LI
PhD
,
Department of Electrical and Electronic Engineering
Email
Hua.Li
nottingham.edu
cn
h-index
1
Scopus Citations
1
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2022
2023
Research activity per year
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Dive into the research topics where Hua LI is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Acceleration Response
16%
Air-gap Magnetic Field
10%
Amplitude Reduction
10%
Analytical Method
16%
Armature Field
16%
Armature Reaction
33%
Armature Reaction Field
16%
Current Loading
16%
Electric Machines
16%
Electric Vehicle
16%
Electromagnetic Force
60%
Electromagnetic Force Analysis
50%
Electromagnetic Force Harmonics
50%
Electromagnetic Vibration
83%
Equivalent Radiated Power
10%
Finite Element Tool
16%
Force Analysis
50%
Force Harmonics
43%
Force Optimization
50%
Forces Behavior
16%
Frozen Permeability
16%
Frozen Permeability Method
50%
Harmonic Response Analysis
10%
Harshness
20%
High Current
16%
Interior Permanent Magnet
66%
Interior Permanent Magnet Synchronous Motor (IPMSM)
70%
Interior PM
50%
Level Reduction
10%
Magnetic Field Harmonics
16%
Noise Vibration
20%
On-load
70%
Open Circuit
26%
Open-circuit Magnetic Field
16%
Operating Conditions
16%
Optimization Approach
10%
Output Torque
10%
Peak Operation
16%
Permanent Magnet Traction Motor
66%
Power Level
10%
Radial Acceleration
16%
Radial Electromagnetic Force
16%
Radial Force
50%
Radial Magnetic Force
16%
Rotor
10%
Stator
26%
Time Order
33%
Torque Capacity
10%
Traction Motor
50%
Zeroth-mode Vibration
26%
Engineering
Acceleration Response
8%
Armature Reaction
25%
Electric Machine
8%
Electric Vehicle
8%
Electromagnetic Loads
50%
Finite Element Method
18%
Harmonics
90%
Magnetic Field
26%
Magnetic Force
8%
Main Factor
8%
Noise Vibration and Harshness
20%
Open Circuit
26%
Optimization Approach
10%
Output Torque
10%
Permanent Magnet
75%
Permanent Magnet Motor
18%
Power Level
10%
Radial Force
50%
Radiated Power
10%
Rotors
10%
Slotting
10%
Traction Motors
100%
Vibration Mode
18%