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Ming Li
School of Mechatronical Engineering
h-index
160
Citations
8
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2000
2024
Research activity per year
Overview
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Research output
(64)
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(1)
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Dive into the research topics where Ming Li is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Engineering
Aerodynamic Characteristic
16%
Ammunition
68%
Angular Acceleration
18%
Area Density
20%
Blast Wave
16%
Compressive Sensing
32%
Computer Simulation
18%
Control System
24%
Coordinate System
24%
Coupling Coefficient
18%
Delay Estimation
66%
Delay Time
70%
Design Method
16%
Direction of Arrival
16%
Direction-of-Arrival Estimation
48%
Dyneema
32%
Empirical-Mode Decomposition
21%
Energy Engineering
21%
Equipment Testing
16%
Estimation Error
16%
Experimental Result
18%
Finite Element Method
16%
Frequency Component
20%
Impact Response
16%
Intrinsic Mode Function
16%
Lagrange
24%
Location Error
19%
Measurement System
16%
Mechanical Response
16%
Microsphere
17%
Munition
81%
Nodes
100%
Optimal Design
16%
Relative Velocity
16%
Response Characteristic
21%
Rocket Engine
32%
Selection Criterion
16%
Sensor Array
21%
Simulation Result
47%
Strain
16%
Systems Analysis
35%
Target Orientation
20%
Target Plate
16%
Target Tracking
64%
Test Result
21%
Transducer
56%
Transients
20%
Transmissions
19%
Virtual Instrument
52%
Wireless Sensor Network
27%
Computer Science
Actuator Networks
16%
Adaptive Filter
10%
Analytical Hierarchy Process
16%
Command Terminal
16%
Communication Overhead
8%
Compressive Sensing
16%
Computational Complexity
11%
Computational Resource
8%
Covariance Matrix
11%
Data Fusion
13%
Data Processing
5%
Decision-Making
16%
Difference Value
5%
direction-of-arrival
32%
Distributed Systems
16%
End-to-End Delay
5%
Energy Consumption
5%
Environment Model
8%
Error Correction
5%
Estimation Algorithm
12%
Estimation Method
16%
Fuzzy Logic
16%
Gaussian Mixture Model
16%
Good Performance
5%
Kalman Filtering
8%
Key Requirement
16%
Likelihood Estimation
24%
Local Environment
16%
localization algorithm
32%
Low Power Consumption
8%
Lower Energy Consumption
16%
maximum-likelihood
24%
Measurement Error
5%
Media Access Control Protocol
16%
Motion Model
16%
Negative Effect
8%
noise signal
5%
Position Information
16%
Power Consumption
16%
Processing Method
5%
Relative Position
16%
Residual Error
8%
Selection Criterion
16%
Technique for Order of Preference by Similarity to Ideal Solution
16%
Time Efficiency
16%
Token Ring
16%
Tracking Algorithm
16%
Transmission Delay
10%
Wireless Communication
8%
Wireless Sensor Network
32%