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查看 Scopus 资料
张 成
宇航学院
h-index
162
引用
5
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
(36)
指纹图谱
深入其中 Cheng Zhang 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
Multistage
100%
Computer Simulation
73%
Gauss
66%
Optimisation Problem
58%
Automatic Pilot
50%
Kalman Filter
50%
Cooperative
50%
Velocity Vector
41%
Simulation Experiment
37%
Rate Gyro
35%
Feedback Loop
35%
Simulation Result
34%
Initial Value
33%
Flight Phase
33%
Optimization Method
33%
Layer Network
30%
Adaptability
30%
Engineering
30%
Feature Extraction
25%
Probable Error
25%
Limit Cycle
25%
Detecting Target
25%
Unmanned Aerial Vehicle
25%
Pose Estimation
25%
Rotors
25%
Robot
25%
Control Force
25%
Horizontal Plane
25%
Target Tracking
25%
Impact Point
25%
Angular Velocity ω
25%
Airframe
25%
Control System Design
25%
Rotational Motion
25%
Original Network
25%
Control Scheme
25%
Rotational
25%
Cable System
25%
Nonlinear Filtering
25%
Acceleration Command
25%
Trajectory Planning
25%
Artificial Neural Network
25%
Boosters (Rocket)
25%
Extended Kalman Filter
25%
Target Point
25%
Inertial Navigation System
25%
Angle-of-Attack
25%
Nonlinear Control Systems
25%
Early Stage
25%
Human Vision
25%
Computer Science
Pose Estimation
50%
Object Detection
43%
Complex Environment
41%
Estimation Method
29%
Network Layer
27%
Simultaneous localization and mapping
25%
RGB Image
25%
Convolutional Neural Network
25%
Global Feature
25%
Tracking Algorithm
25%
Detection Method
25%
Feature Extraction Network
25%
local feature
25%
Object Detector
25%
Scaling Factor
25%
Binary Network
25%
Trajectory Planning
25%
non linear control
25%
Convolutional Layer
25%
Convex Programming
25%
Reidentification
25%
Person Re-Identification
25%
Convolutional Neural Network
22%
Learning Network
20%
Convergence Property
20%
Feature Extraction
18%
Unmanned Aerial Vehicle
17%
Identification Model
16%
Image Retrieval
12%
Target Location
12%
Multimedia Application
12%
Time Information
12%
Visual Appearance
12%
Captured Image
12%
Data Enhancement
12%
Network Structures
12%
Detection Accuracy
12%
Experimental Result
11%
Deep Convolutional Neural Networks
10%
Optimization Sequence
10%
Computational Efficiency
10%
Programming Method
10%
Systems Simulation
8%
Camera Position
8%
Multi View Clustering
8%
Simulation Experiment
8%
Detection Result
8%
Unlabeled Sample
8%
Unlabeled Data
8%
Training Sample
8%