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金 烨
信息与电子学院
h-index
12
引用
2
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2004
2024
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(20)
指纹图谱
深入其中 Ye Jin 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Engineering
Millimeter-Wave Radar
100%
Synthetic Aperture Radar
90%
Digital Signal Processing System
80%
Processing Method
70%
Design Method
60%
Two Dimensional
60%
Dimensional Matrix
60%
Realization
50%
Tasks
40%
Moving Target Detection
40%
Parallelism
40%
Feature Transform
40%
Time Domain
40%
Design Process
40%
Graphics Processing Unit
40%
Multiple-Input Multiple-Output
40%
Parallel Method
40%
Field Programmable Gate Arrays
40%
Real-Time Operating System
40%
Automatic Ground
40%
Nodes
40%
Process Flow
40%
Measurement Period
40%
Image Interpolation
40%
Scattering Cross
40%
Control Point
40%
MPEG
40%
Simulation Result
40%
Single Measurement
40%
Millimeter Wave
40%
Fast Fourier Transform
40%
Digital Signal Processor
40%
Processor Board
40%
Image Processing Algorithm
40%
Measured Data
40%
Input Response
40%
Measurement Range
30%
Feature Extraction
20%
One Step
20%
Angular Resolution
20%
Software Technology
20%
Frequency Modulation
20%
Good Result
20%
Transmissions
20%
Kernel Size
20%
Optimization Approach
20%
System Development
20%
Measurement Time
20%
Generalized Likelihood Ratio Test
20%
Constant False Alarm Rate
20%
Computer Science
Multicore
74%
Parallel Realization
40%
Fast Fourier Transform
40%
Backprojection
40%
Parallelization
40%
Correction Algorithm
40%
SIMD
40%
Digital Signal Processing System
40%
Scale-Invariant Feature Transform
40%
Parallel Process
26%
Time Requirement
26%
Feature Extraction
20%
Board Support Package
20%
Compressed Code
16%
Pulse Compression
13%
Software Process
13%
Reconfiguration
13%
Matrix Transposition
13%
Transform Algorithm
10%
Floating Point
10%
Synthetic Aperture Radar Images
10%
Synthetic Aperture Radar
10%
Time Processing
10%
Parallel Computing
10%
Memory Management
10%
Distributed Memory
8%
Imaging Process
8%
Parallelism
8%
Approximation (Algorithm)
8%
Parallel Processing
8%
Insufficient Resource
8%
Real Time Performance
8%
Intensive Computation
8%
Processing Method
8%
Processing Capacity
8%
Throughput Capacity
8%
Video Compression System
8%
Parallel Implementation
8%