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系統識別號 U0026-1502201112344800
論文名稱(中文) 網路交易平台人機介面設計模式建構之研究
論文名稱(英文) A study on model construction of man-machine interface design for network trading platform
校院名稱 成功大學
系所名稱(中) 工業設計學系碩博士班
系所名稱(英) Department of Industrial Design
學年度 99
學期 1
出版年 100
研究生(中文) 林恆昌
研究生(英文) Heng-Chang Lin
電子信箱 lin.hengchang@gmail.com
學號 p3892114
學位類別 博士
語文別 英文
論文頁數 86頁
口試委員 指導教授-賴新喜
召集委員-吳肇熙
口試委員-謝志成
口試委員-陳昱丞
口試委員-張華城
中文關鍵字 人機介面設計  網路交易平台  建構模式  設計知識  設計產業  設計決策 
英文關鍵字 Man-machine interface design  Network trading platform  Constructing model  Design knowledge  Design industry  Design decision 
學科別分類
中文摘要 摘要

由於網路交易的興起,提供各式各樣服務的全球資訊網路交易網站,也為企業創造了一個新的經營管理模式,經由網際網路虛擬環境,提供了使用者各種式樣的商品或服務,也對企業經營管理提供了知識蒐集、整合等有效的方法與途徑。
本研究整合人機介面設計於網路交易平台,適用於B2B ,B2C 或 C2C 使用者。由作者所創新的建構模式具有結合知識基底的系統,策略性決策理論,以及摩控回授理論,成為一個自我組織,解決問題和機會導向的方法模式。新的建構模式是八個步驟 (包括:1.模式目的建立、2.模式內容描述、3.策略擬訂、4.程式規劃、5.模式運作、6.人機介面設計、7.網路交易設計、8.修正與完成) 系統性的決策,以協助知識基底的人機系統設計者,解決網路交易問題使更具效率性並做出比較傳統更精確更可靠的決策。
由本研究所創新的模式係應用電腦為基底知識的表達技術,具有快速和自動化的功能,並且其採用新的程式語言如XML, UML 等。傾向於產生更佳決策結果,因此,新的創新模式將是推動知識為基底的人機系統設計成為科學化、電腦化、自動化時代,是用於網路交易平台的重要工具。
英文摘要 ABSTRACT

With the rise of network trading, the Internet not only furnishes users not only with needed products and services but also provides business managers with an effective method and channel for collecting knowledge. However, when we consider the life cycle of a product, all of the various tasks have a great effect on the cost, quality, and management of a business, and may even become crucial to its successful operation.
This study emphasizes the integration of man-machine interface design into an internet transaction platform for B2B, B2C and C2C users. The new developed model is characterized by its combination of a Knowledge-based System, Strategic Decision-Making Theory, and Cybernetic Feed-back Theory, in support of self-organizing, problem-solving and opportunity-oriented methods. The new model has an eight-step (specifying the purpose of the system, system content description, strategy setting, system programming design, model implementation, man-machine interface design, network trading design, revision and completion), systemic decision-making procedure, to help knowledge-based man-machine system designers solve the internet transaction problems effectively, and to make more accurate and reliable decisions than traditional method.
The new model, by exploiting computer-based knowledge representation, automatically and rapidly performs it, also tends to produce much better decision results by exploiting new programming languages, such as XML and UML. Therefore, the he new model will be essential to the advance of Knowledge-based Man-Machine System Design for internet transaction platforms into a scientific, computerized and automatic era.
論文目次 CONTENTS

摘要…………………………………………………………i

ABSTRACT………………………………………………………………………….ii

誌謝................................................iv

CONTENTS………………………………………………………………………….v

LIST OF FIGURES………………………………………………………………..viii

Chapter 1
Introduction………………………………………………….1

1.1 Motivation of the research…………………………………………………...1

1.2 Importance of the research…………………………………………………...1

1.3 Objectives of the research……………………………………………………2

1.4 Procedure of research………………………………………………………...3

Chapter 2
Literature Review……………………………………………………………………5

2.1 User interface..............................5

2.2 Human-computer interaction………………………………………………...7

2.3 Network trading platform……………………………………………………8

Chapter 3
Method of constructing model of interface design for network trading platform……………………………………..……………………………………….11

3.1 The theoretical basis of the method of constructing model of interface design for network trading platform……………………………………………..12

3.2 The implementation process of the method of constructing model of interface design for network trading platform………………………………………...13

Chapter 4
Model application (I)
Application for Product Knowledge System………………………………...15

4.1 Purpose of model application (I)……………………………………………15

4.2 Description of model application (I)………………………………………..17

4.3 Statement of Strategy of model application (I)......19

4.4 Development of programming for model application (I)…...23

4.5 Implementation of model application (I)…..………….27

4.6 Revision and completion of model application (I)…………….28

Chapter 5
Model application (II)
Application for Product Information Management……………………….31

5.1 Purpose of model application (II)…………………………………………...31

5.2 Description of model application (II)……………………………………….33

5.3 Statement of Strategy of model application (II)…………….35

5.4 Programming for model application (II)……………………………………39

5.5 Implementation of model application (II)……………………………..42

5.6 Design of man-machine interface for model application (II)……….45

5.7 Revision and completion of model application (II)……………48

Chapter 6
Model application (III)
Application for Knowledge-Sharing System and Design……....52

6.1 Purpose of model application (III)…………………………………………..52

6.2 Description of model application (III)………………………………………54

6.2.1 Data Mapping………………………………………………………...55

6.2.2 Data Exchange………………………………………………………..55

6.2.3 XML web service application (III)…………………………………...57

6.3 Statement of Strategy of model application (III)………………58

6.4 Programming for model application (III)…………………………………..61

6.5 Implementation of model application (III)……………………………….64

6.6 Design of man-machine interface for model application (III).........66

6.7 Design of internet transaction platform for model application (III)….……..70

6.8 Revision and completion of model application (III)……….72

Chapter 7
Conclusion and future works……………………………………………………...74

REFERENCE………………………………………………………………………78

VITA………………………………………………………………………………...86

LIST OF FIGURES

Figure 1.1 Flow-chart of research procedure………………………………………..4

Figure 3.1 Basic theory of model construction…….………….12

Figure 3.2 Implementation process of model construction……..14

Figure 4.1 Web knowledge-sharing framework connects users to data resources……………25

Figure 4.2 Analysis of use case diagram involving design firms, manufacturers and buyers……………………………………………………………………26

Figure 4.3 Analysis of consumers' use case diagram………………26

Figure 4.4 Analysis of quadrilateral Internet-mediated transaction-matching sequence Diagram…………………………………………27

Figure 4.5 The configuration blueprint of the next-generation platform………………………30

Figure 5.1 Internet-mediated knowledge management chart in industrial design…………………39

Figure 5.2 Product development workflow model in industrial design………………45

Figure 5.3 Integration model for XML Web Services………………………47

Figure 5.4 Product sample provided by manufacturer that has been chosen by buyer…………………………………………47

Figure 5.5 Integration mode of system information during transaction-matching process……………………………………………48

Figure 5.6 Future perspective mode of integrating product information management (PIM)…………………………………………………………………51

Figure 6.1 Four-parties involved in product development process in design industry……………………………………………………………60

Figure 6.2 Web knowledge-sharing framework connects users to data resources……………64

Figure 6.3 Integration Mode of System Information during Transaction-matching Process…………………………………………………66

Figure 6.4 Definition of XML tags use in the information of product sample……69

Figure 6.5 XML tags value management…………………………………69

Figure 6.6 Way to replace value with XML tags use in information of Product sample…………………………………………………………70

Figure 6.7 Product sample provided by manufacturer that has been chosen by buyer…………………………………71
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