• Title/Summary/Keyword: 3D interface

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Difference of GUI Efficiency based on 3D and 2D Graphic -Imaginary 3D IPTV Interface Development Using Virtual Reality Theory- (2D와 3D Graphic 기반으로 구성된 GUI의 효율성의 차이 -가상현실이론을 활용한 가상 3D IPTV 인터페이스 개발-)

  • Sung, Jung-Hwan;Lee, Dae-Young;Kim, Hyung-Koo
    • The Journal of the Korea Contents Association
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    • v.7 no.7
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    • pp.87-95
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    • 2007
  • On this study, we researched differences between 2D and 3D with principle of GUI with the estimate that the user interface will be changed to 3D and we figured out the special feature of 3d-GUI through 3 ways, Autonomy, Interaction and Presence. Based on this theory research, we also had a survey with difference of 3d and 2d GUI to forecast the possibility of 3d-GUI for the main user interface of the future media contents and finally found out its marketability as an ideal interface.

Implementation of an User Interface Developing Tool for 3D Simulator (3차원 시뮬레이터의 사용자 인터페이스 개발 도구 구현)

  • Yoon, Ga-Rim;Jeon, Jun-Young;Kim, Young-Bong
    • Journal of Korea Multimedia Society
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    • v.19 no.2
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    • pp.504-511
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    • 2016
  • 3D simulation programs or games on a smart phone and a personal computer have often employed 3D graphic processing techniques and 3D graphical views. However, the user interfaces in those 3D programs have sticked to take a typical 2D style user interface and thus the combination of a 2D user interface view and a 3D simulation view give us a mismatched sense. Since a 2D user interface has been based on the windows controls, it causes sometime DC conflicts between a simulation view and an interface view. Therefore, we will implement the UI developing tool which can be inserted into the pipeline structure for the development of a 3D simulation software and also follows the view-handler design pattern in Microsoft windows system. It will provide various graphical effects such as the deformation of UI depending on the view direction of simulation view and the sitting pose of user. This developing tool gives the natural user interface which heightens the sense of unity with a given 3D simulation view.

A Study on Implementation Methods of the 3-D u-City Portal Systems (3차원 u-City 포탈시스템의 구현방안 연구)

  • O, Jong-U;Gu, Yang-Mo;Ju, Yeong-Bok
    • 한국디지털정책학회:학술대회논문집
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    • 2006.12a
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    • pp.409-418
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    • 2006
  • The purpose of this paper is to present a low cost u-City portal development idea and to propose an exclusive system architecture using 3-D interface layers. 3-D interface layers consist of reused ideas of data from existed public data produced from GIS in order to reduce Produce Processes. 3-D interface layers implement a u-City portal systems that tags from physical spaces 1 ink to mobiles from ubiquitous networks between electronic spaces and physical spaces. Primary produce of this study exhibits an exclusive architecture of a u-City portal for speedy and low cost web 3-D interface layers and GIS data, and for implementation interface of 3-D types on USN of physical spaces. Secondary produce of this study represents that a 3-D u-City portal system has visualized speedy implementation characteristics for implementation of the application systems to execute an ubiquitous concept by returning electronic space to physical space, and to present the low cost 3-D u-City portal than an existed 3-D u-city development strategy. Therefore continuous expansion and study of the 3-D interface physical space under a 상황인지(Context Awareness)ubiquitous will appear the innovated u-City portal systems.

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User Needs of Three Dimensional Hand Gesture Interfaces in Residential Environment Based on Diary Method (주거 공간에서의 3차원 핸드 제스처 인터페이스에 대한 사용자 요구사항)

  • Jeong, Dong Yeong;Kim, Heejin;Han, Sung H.;Lee, Donghun
    • Journal of Korean Institute of Industrial Engineers
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    • v.41 no.5
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    • pp.461-469
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    • 2015
  • The aim of this study is to find out the user's needs of a 3D hand gesture interface in the smart home environment. To find out the users' needs, we investigated which object the users want to use with a 3D hand gesture interface and why they want to use a 3D hand gesture interface. 3D hand gesture interfaces are studied to be applied to various devices in the smart environment. 3D hand gesture interfaces enable the users to control the smart environment with natural and intuitive hand gestures. With these advantages, finding out the user's needs of a 3D hand gesture interface would improve the user experience of a product. This study was conducted using a diary method to find out the user's needs with 20 participants. They wrote the needs of a 3D hand gesture interface during one week filling in the forms of a diary. The form of the diary is comprised of who, when, where, what and how to use a 3D hand gesture interface with each consisting of a usefulness score. A total of 322 data (209 normal data and 113 error data) were collected from users. There were some common objects which the users wanted to control with a 3D hand gesture interface and reasons why they want to use a 3D hand gesture interface. Among them, the users wanted to use a 3D hand gesture interface mostly to control the light, and to use a 3D hand gesture interface mostly to overcome hand restrictions. The results of this study would help develop effective and efficient studies of a 3D hand gesture interface giving valuable insights for the researchers and designers. In addition, this could be used for creating guidelines for 3D hand gesture interfaces.

Direct3D Interface Module Development for Python Language (Python 언어를 위한 Direct3D 인터페이스 모듈 개발)

  • Lee, Gang-Seong
    • Journal of Korea Game Society
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    • v.6 no.1
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    • pp.29-36
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    • 2006
  • This paper describes the implementation of Direct3D interface library for Python language. DirectX is the most popular library used for 3D games and 3D modelings. However, softwares which use the library can only be developed in the environments provided by Microsoft like Visual Studios and .NET framework. The interface module for Python, this paper presents, will extend the coverage of the useful library DirectX to a language which is not fully supported by Microsoft. The interface techniques described here can be a guide to develop interface modules for other languages too, which make their language more powerful and extensible. This paper describes the implementation techniques to develop the interface module for Python, advantages and disadvantages.

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3D Graphic Interface Design for TV using Behavior and Attribute Analysis (행위와 속성 분석을 통한 TV 의 3D 그래픽 인터페이스 디자인 연구 -실생활과 접목된 필연적인 인터페이스 구현을 위한 방법론)

  • Shim, Jae-Hee;Kim, Uni-Young;Kim, Ji-Hea;Lee, Hyung-Nam;Jang, Sae-Hun
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.996-1000
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    • 2009
  • There can be three objectives why we apply 3D graphics in TV interface. First, inevitable usability. 3D space is the most inevitable way for product-user interaction deviating from the current aesthetic or technical purpose of use. Second, enhance emotional satisfaction by merging interface into real life. Beyond digilog(analog+digital), we wanted users to naturally use the interface as if they are using everyday objects. And in order to do this properly, we analyzed the behaviors of users how they use their everyday objects and then analyzed the attributes beyond each behavior. Third, capaticy for enourmous contents of the incorporated TV. The most efficient way to display enormous amounts of contents in a limited screen is 3D. And that 3D space gives us almost unlimited capacity in accepting contents. Now to conclude, using 3D graphics for TV interface has significance in many ways but the issue is how we can maintain the 3D effects while customizing them into real products.

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A 3D visualization method for mobile interface based on user's menu preference (사용자 메뉴 선호도 기반 모바일 인터페이스 3D 시각화 기법)

  • Yu, Seok-Jong
    • Journal of the Korea Society of Computer and Information
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    • v.15 no.7
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    • pp.49-55
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    • 2010
  • The analysis of menu preference by different users is one of the important issues in mobile interface design. Current mobile phones do not provide any functionalities to customize the user interface based on use history after they are released by manufacturers or mobile carriers. Though a number of functions are loaded into mobile devices, all the menus are uniformly presented to users regardless of menu preference, and it becomes a reason to decrease the usability of mobile interface. To improve this limitation, this paper suggests how to apply 3D visualization methods to mobile interface, depending on menu use history. In addition, for performance evaluation, 3D mobile interface system was implemented using 3D visualization methods such as depth, transparency, and animation. Finally, experiments for performance evaluation were performed in order to measure and compare menu search times.

A Study on 3D View Design of Images and Voices Integration for Effective Information Transfer (효과적 정보전달을 위한 영상정보의 3D 뷰 및 음성정보와의 융합 연구)

  • Shin, C.H.;Lee, J.S.
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.1B
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    • pp.35-41
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    • 2010
  • In this paper, we propose a 3D view design scheme which arranges 2D information in a 3D virtual space with a flexible interface and voice information. The scheme allows the user interface of the 2D image in 3D virtual space anytime from any view point. Voice information can be easily attached. It is this simple and efficient image and voice information arrangement in 3D virtual space that improves information transfer.

A Virtual 3D Interface System for the Remote Control of Robot Agent (로봇 에이전트의 원격 제어를 위한 가상 3D 인터페이스 시스템)

  • 안현식
    • Journal of the Institute of Convergence Signal Processing
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    • v.2 no.4
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    • pp.85-90
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    • 2001
  • Recently there are lots of concerning on robot agent system working for itself with the trends of the research of bio-mimetic system and intelligent Therefore it is necessary to develop more humanized interface system from communicating with the robot agent. In this paper a virtual 3D interface system is proposed based on Internet for remote controlling and monitoring of robot agent. The proposed system is constructed as manager-agent model and a man can order a job at the 3D virtual interface environment of the manager located remotely Then the robot agent detects a 3D profile data from a range finder automatically and the robot moves the object to the new position in real space. The proposed system supports a advanced interface displaying virtual 3D graphics and real moving images and which makes it possible one to manage the robot agent more conveniently.

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