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Shan He
Post.Doc
AAU Energi
Det Ingeniør- og Naturvidenskabelige Fakultet
Mechatronic Systems
https://orcid.org/0000-0001-6789-8271
Telefon
+4599408758
E-mail
she
energy.aau
dk
Pontoppidanstræde 111
9220
Aalborg Øst
Danmark
2017
2024
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(5)
Publikationer
(61)
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(6)
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Alfabetisk
Engineering
Battery (Electrochemical Energy Engineering)
100%
State of Health
81%
Feedforward
78%
Lithium-Ion Batteries
72%
Harmonics
59%
Capacitor Voltage
55%
Control Strategy
47%
Filter Parameter
42%
Passivity
39%
Experimental Result
36%
Pulse Width Modulation
34%
Voltage Source Converter
33%
Control Scheme
30%
Symmetrical Component
28%
Phase Induction Motor
27%
Induction Motor
27%
Active Power Filter
27%
Switching Frequency
24%
Grid Voltage
22%
Phase Fault
22%
Critical Frequency
22%
Nyquist Frequency
21%
Simulation Result
21%
Dissipative Region
20%
Extreme Learning Machine
19%
Stability Margin
18%
Transients
18%
Doubly-Fed Induction Generator
18%
Resonance Frequency
17%
Phase Locked Loop
16%
Grid Impedance
16%
State of Charge
14%
Control Loop
14%
Artificial Intelligence
13%
Power Electronics
13%
Delay Time
13%
Power Electronic Converter
13%
Switching Period
13%
Sixth Order
12%
Battery Pack
10%
Temperature Model
10%
Base Model
10%
Point of Common Coupling
10%
Lithium Ion Battery
10%
Current Harmonic
10%
Partial Derivative
9%
Sampling Frequency
9%
Equivalent Circuit Model
9%
Real Part
9%
Systems Stability
9%
Keyphrases
Dissipativity
75%
Multi-sampling
48%
Current Control
47%
Capacitor Voltage Feedforward
37%
Grid-following
36%
Capacitor Current
28%
Passivity-based
27%
Filter Parameter
27%
Wideband
27%
Grid-forming
27%
Active Power Filter
27%
LCL Filter
25%
Control Delay
24%
Voltage Control
23%
Parameter Deviation
22%
Switching Harmonics
21%
Grid-connected Inverter
20%
Switching Frequency
19%
Output Admittance
19%
Design Basis
18%
Robustness Enhancement
18%
Load Current Feedforward
18%
Single-loop Voltage Control
18%
Doubly Fed Induction Generator System
18%
Passivity-based Design
18%
Grid-connected Converter
18%
Multisampling Control
16%
Resonant Frequency
15%
Dissipative Characteristics
13%
Grid-side Current
12%
Filter Resonance
12%
High-frequency Switching
12%
Nyquist Frequency
12%
Critical Frequency
12%
Active Damping
12%
LCL-type Grid-connected Inverter
12%
Current-voltage
11%
Pulse Width Modulation
10%
Power Electronic Converters
10%
Control Strategy
10%
Phase-locked Loop
9%
ELM Algorithm
9%
Cut-off Voltage
9%
Few-shot Learning
9%
Voltage Feedback
9%
Parallel System
9%
Three-phase Inverter
9%
Virtual Elements
9%
Update Latency
9%
Early Prediction
9%