Implementing an interactive surface within Co-existing context

碩士 === 國立雲林科技大學 === 數位媒體設計系 === 107 === The building facade can be seen as a medium between the human and the building space, which forms an interactive interface. The dynamic skin fabrication process of the building is complex and needs to be customized and redefined each time, and its design and f...

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Bibliographic Details
Main Authors: HSIEH, TSAI-LING, 謝采玲
Other Authors: CHANG, TENG-WEN
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/2gf3th
Description
Summary:碩士 === 國立雲林科技大學 === 數位媒體設計系 === 107 === The building facade can be seen as a medium between the human and the building space, which forms an interactive interface. The dynamic skin fabrication process of the building is complex and needs to be customized and redefined each time, and its design and fabrication methods are difficult to describe. It is also a large component-based interactive interface. The interactive interface has become an interface that allows users to be co-existing between physical and virtual during the interaction process. The interactive interface described in this study, which integrates geometry, structure, materials, and electronics subsystems, requires innovative design methods and processes. Additionally, with the development of information technology and smart materials, these surfaces require tailor-made constructive process (in both fabrication and assembly stages) in order to testify the prototype proposed. In order to allow the design team to try this type of design with a large interactive interface composed of components, and to be able to carry out prototype practice smoothly, the visual system ViDA was proposed. Through the preliminary research to explore the characteristics of the prototyping process, design the function and architecture of the ViDA system. Five experiments were designed according to the experimental objectives, and the tool requirements and verification of ViDA system functions were understood through the iterative design of the tools proposed in the experiment. Finally, analyzing the advantages and disadvantages of ViDA's existing functions. The interactive design in the design stage of prototyping, a decentralized agent-based interaction design model in the interactive space. The definition of the algorithm requirements for assembly is proposed in the assembly stage.