The Study by Applying Multiple Haptic Feedback for Human–Computer Interaction – Applications of Immersive Experience and Teaching Aid Design

碩士 === 淡江大學 === 電機工程學系碩士班 === 106 === In this thesis, we utilize multiple haptic feedback in the field of human-computer interaction, and applying to immersive experience and teaching aids. This thesis consists of two parts, enhancing immersive experience and teaching aids. To enhance the user exper...

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Bibliographic Details
Main Authors: Sheng-Fu Ko, 柯勝富
Other Authors: Chien-Hsing Chou
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/4e52k2
Description
Summary:碩士 === 淡江大學 === 電機工程學系碩士班 === 106 === In this thesis, we utilize multiple haptic feedback in the field of human-computer interaction, and applying to immersive experience and teaching aids. This thesis consists of two parts, enhancing immersive experience and teaching aids. To enhance the user experience, two application, namely as AoEs and 4D theater are developed. In this study, we design AoEs to provide multiple haptic feedback in order to enhance teleportation experience in immersive environment. By combining different haptic devices, AoEs can simulate a variety of nature environments. In addition, we propose an application, 4D theater, by applying the haptic case and Google Image Content Analysis system, the 4D theater application can real-time detect Environmental changes in movie scene and switch haptic modules to simulate corresponding haptic feedback for user in virtual reality. To help designers to develop the interactive devices, we propose a rapid prototype including a haptic controller and its operation system. The proposed rapid prototype optimizes user interface for the purpose of strengthening ease of use for Haptic Maker, and resolves the issue about hardware-software integration, a lot of time to making haptic prototype, and needing much background related knowledge. It lets designer more intently focus on development of interactive content and haptic device, and helps designer reduce time to make haptic devices.