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Xingjun Li
Ph.d.-studerende
,
AAU Energi
Ph.d.-studerende
,
Det Ingeniør- og Naturvidenskabelige Fakultet
Ph.d.-studerende
,
Power Electronics System Integration and Materials
Battery Systems
E-mail
xinli
energy.aau
dk
2021
2024
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(6)
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Keyphrases
Lithium-ion Battery
50%
Estimation Accuracy
41%
Extracting Features
33%
Forklift
33%
Accuracy Comparison
25%
Charging Voltage Curve
25%
Battery SOH
25%
SOH Estimation
25%
Multiple Linear Regression
25%
Health Status
25%
State of Health Estimation
25%
Age Profiles
25%
Battery Operation
25%
Operation Data
25%
Partial Recharge
25%
Partial Characteristics
25%
Voltage Curve
16%
Step Voltage
8%
Box-Cox Transformation
8%
Public Dataset
8%
Model Accuracy
8%
E-energy
8%
Multiple Linear Regression Model
8%
Three-level
8%
Energy Storage Devices
8%
E-mobility
8%
Driving Profile
8%
Regression Vectors
8%
Load Profile
8%
Reliable Operation
8%
Starting Voltage
8%
Root Mean Square Error
8%
Generalization Performance
8%
Work Estimates
8%
Improvement Direction
6%
Maximum Loss
5%
Engineering
Lithium-Ion Batteries
100%
State of Health
50%
Battery (Electrochemical Energy Engineering)
49%
Theoretical Investigation
25%
Thermoelectrics
25%
Experimental Investigation
25%
Performance Loss
25%
Engineering
25%
Life Prediction
25%
Peltier Effect
25%
Charging Voltage
15%
Machine Learning Algorithm
12%
Field Data
12%
Exergy Efficiency
10%
Energy Conservation
10%
Energy Efficiency
10%
Root Mean Square Error
8%
Energy Storage
8%
Reliable Operation
8%
Gaussians
7%
Feature Extraction
7%
Waste Heat Recovery System
5%
Cold Side
5%
Power Loss
5%
Load Profile
5%
Analytical Model
5%
Thermal Resistance
5%
Computer Science
Machine Learning
50%
Estimation Accuracy
33%
Machine Learning Algorithm
25%
Estimation Performance
16%
Support Vector Regression
16%
Sliding Window
16%
Feature Selection
16%
State Estimate
8%
Feature Subset Selection
8%
Theoretical Study
8%
Real Application
8%
Hardware Implementation
6%
Extension Strategy
6%
Physical Information
6%
Transfer Learning
6%
Preprocessing Technique
6%
Energy Storage Device
6%
Chronological Order
6%
Reliable Operation
6%