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查看斯高帕斯 (Scopus) 概要
何 應欽
教授
工業管理研究所
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ho
cc.ncu.edu
tw
網站
http://ia.mgt.ncu.edu.tw/03/81/main_v.php?id=81%22
h-index
973
引文
16
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1993 …
2025
每年研究成果
概覽
指紋
網路
研究計畫
(7)
研究成果
(46)
資料集
(1)
指紋
查看啟用 Ying-Chin Ho 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Keyphrases
Multiple Loads
100%
Layout Design
88%
Automated Guided Vehicle
84%
Selection Rules
80%
Zone picking
75%
Load Selection
70%
Taiwan
66%
Warehouse
62%
Multi-load AGV
62%
Load Balancing
58%
TFT-LCD
58%
Order picking
57%
Dispatching Rules
56%
Automated Guided Vehicle System
52%
Flow Distance
51%
Original Design Manufacturing
50%
Concurrent Engineering
50%
Machine Layout
50%
Simulation Study
50%
Flow Path
50%
Order Batching
43%
Order Selection
42%
In-line Stocker
41%
Design Methodology
36%
Flexible Manufacturing System
34%
Collision Prevention
33%
Collision Load
33%
Vehicle Collision
33%
Distribution Center
33%
Cross-aisle
33%
Manufacturing Firms
33%
Single Loop
33%
Sequence Pattern
33%
Vehicle System
33%
Layout Method
31%
Picker
31%
Simulated Annealing
29%
Dispatching Problem
28%
Dynamic Regions
28%
Flow Line
27%
Selection Problem
27%
Control Problem
26%
Intercell Flow
25%
Stacker Crane
25%
Layout Problem
24%
Cell Formation
23%
Cell Flows
23%
Path Configuration
23%
Cellular Layout
22%
Operation Sequence
22%
Engineering
Selection Rule
91%
Automated Guided Vehicle
86%
Gas Fuel Manufacture
76%
Liquid Crystal Display
61%
Thin-Film Transistor
58%
Simulation Result
52%
Flexible Manufacturing System
50%
Concurrent Engineering
50%
Flow Path
50%
Cellular Manufacturing
38%
Design Method
36%
Performance Measure ψ
36%
Illustrates
35%
Control Strategy
33%
Manufacturing Company
33%
Material Handling
32%
Simulation Experiment
32%
Flow Cell
26%
Programming Model
25%
Assembly System
25%
Handling System
24%
Quality Function Deployment
20%
Material Flow
19%
Multiple Cell
18%
Warehouses
18%
Computer Control
16%
Control Zone
16%
Product Development Methodology
16%
Success Factor
16%
Output Point
16%
Solve Method
16%
Belts
16%
Design Procedure
16%
Optimality
16%
Design and Environment
16%
Pattern Matching
16%
Iso
16%
Retrieval System
16%
Storage System
16%
Flow Analysis
16%
Objective Function
16%
Hybrid Approach
16%
Nearest Neighbor
16%
Load Balance
12%
Conveyor
11%
Flow Time
11%
Propose Method
11%
Design Technique
11%
Route Planning
10%
Flow Line
10%