• Title/Summary/Keyword: 3-D visualization interface

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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.

Location-aware visualization of VRML models in indoor location tracking system

  • Yang, Chi-Shian;Chung, Wan-Young
    • Journal of Sensor Science and Technology
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    • v.16 no.3
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    • pp.220-228
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    • 2007
  • For many applications particularly in navigation system, a three-dimensional representation improves the usability of information. This paper introduces 3D Graphical User Interface (GUI) of indoor location tracking system, 3D Navigation View. The application provides users a 3D visualization of the indoor environments they are exploring, synchronized with the physical world through spatial information obtained from indoor location tracking system. It adopts widely used Virtual Reality Modeling Language (VRML) to construct, represent, distribute and render 3D world of indoor environments over Internet. Java, an all-purpose programming language is integrated to comprehend spatial information received from indoor location tracking system. Both are connected through an interface called External Authoring Interface (EAI) provided by VRML. Via EAI, Java is given the authority to access and manipulate the 3D objects inside the 3D world that facilitates the indication of user's position and viewpoint in the constructed virtual indoor environments periodically.

Development of Web-based Interface Tool for Map Data Visualization (웹 환경에서의 지도 기반 데이터 시각화 인터페이스 툴 개발)

  • Choi, Jin;Kil, Sun-Young;Lim, Soon-Bum
    • Journal of Korea Multimedia Society
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    • v.20 no.8
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    • pp.1216-1223
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    • 2017
  • Because of the open data in public domains, it is easy to collect the public data. However, people find difficulty in visualizing the data in material that they actually want. Especially, A map is a difficult material to do the visualization work, without using the specific tools and learning. Therefore, in this paper, we proposed an interface tool for map data visualization that user can easily visualize various national statistics data on the map. We designed the interface by classifying the properties of the map systematically, focusing on the completion and convenience for making the map. After that, we developed a web-based application using D3.js. After user evaluation, we found that our application can visualize the map more quickly and completely than any other web interfaces for map data visualization. Users also found a higher satisfaction in operating convenience.

Development of PC-based Radiation Therapy Planning System

  • Suh, Tae-Suk;P task group, R-T
    • Proceedings of the Korean Society of Medical Physics Conference
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    • 2002.09a
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    • pp.121-122
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    • 2002
  • The main principle of radiation therapy is to deliver optimum dose to tumor to increase tumor cure probability while minimizing dose to critical normal structure to reduce complications. RTP system is required for proper dose plan in radiation therapy treatment. The main goal of this research is to develop dose model for photon, electron, and brachytherapy, and to display dose distribution on patient images with optimum process. The main items developed in this research includes: (l) user requirements and quality control; analysis of user requirement in RTP, networking between RTP and relevant equipment, quality control using phantom for clinical application (2) dose model in RTP; photon, electron, brachytherapy, modifying dose model (3) image processing and 3D visualization; 2D image processing, auto contouring, image reconstruction, 3D visualization (4) object modeling and graphic user interface; development of total software structure, step-by-step planning procedure, window design and user-interface. Our final product show strong capability for routine and advance RTP planning.

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3D Visualization using Face Position and Direction Tracking (얼굴 위치와 방향 추적을 이용한 3차원 시각화)

  • Kim, Min-Ha;Kim, Ji-Hyun;Kim, Cheol-Ki;Cha, Eui-Young
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2011.10a
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    • pp.173-175
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    • 2011
  • In this paper, we present an user interface which can show some 3D objects at various angles using tracked 3d head position and orientation. In implemented user interface, First, when user's head moves left/right (X-Axis) and up/down(Y-Axis), displayed objects are moved towards user's eyes using 3d head position. Second, when user's head rotate upon an X-Axis(pitch) or an Y-Axis(yaw), displayed objects are rotated by the same value as user's. The results of experiment from a variety of user's position and orientation show good accuracy and reactivity for 3d visualization.

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Comparison of the borehole and tomography data in subsidence area using 3D visualization (3D 가시화를 이용한 지반침하지역의 시추자료와 토모그래피 자료의 비교)

  • 안조범;윤왕중;김진회
    • Proceedings of the Korean Geotechical Society Conference
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    • 2002.10a
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    • pp.231-236
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    • 2002
  • The understanding of underground geologic structures is of great importance for the surface and subsurface constructions, prevention of natural hazards such as land-slides and subsidence, and many other areas. To get the information on the geologic conditions, many of investigations such as geologic survey, geophysical explorations, testings on the physical properties of rocks, drilling tests and logging, and groundwater surveys are usually conducted, and tremendous data are collected accordingly. In general, however, these huge amount of data are interpreted in the individual areas only. If these data are analyzed collectively, much more information on the geologic conditions can be obtained. In this study, 3D visualization of borehole logging data is attempted. Borehole logging data are obtained at the urban subsidence area. To compare the 3D logging data with other geologic and geophysical data such as resistivity tomography data, interface module was developed. The 3D visualization of logging data and the comparison with other data can be helpful for the understanding of underground geologic structures.

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Visualization of Diagnosed IGES by Java Native Interface (JNI를 이용하여 진단된 IGES의 가시화)

  • 박상호;윤형선;이병훈;김준형;김덕수
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.26 no.2
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    • pp.23-28
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    • 2003
  • This research explains visualization of diagnostic system of 3D CAD data, IGES (Initial Graphics Exchange Specification), by using JNI(Java Native Interface) to connect between C++ and Java programming. The diagnostic system is to analyze IGES clearly by identifying errors and anomalies with respect to the diagnosis of geometry and topology of entities. The output of the system is IGES file including . error information which can be visualized with different colors by several commercial visualization systems. The paper focuses on the visualization of the result IGES which can be extended to web based application over internet.

3D FEM Visualization on CEMTool (CEMTool 환경에서 3D FEM Visualization)

  • Han, Se-Kyung;Park, Jung-Hun;Kwon, Wook-Hyun
    • Proceedings of the KIEE Conference
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    • 2006.07d
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    • pp.2107-2108
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    • 2006
  • 본 논문에서는 범용 공학 소프트웨어인 셈툴과 연계한 FEM 패키지의 3D Visualization 및 Operation에 대해 기술 한다. FEM 해석을 위한 Graphical Interface로서 각종 오브젝트의 생성, 로드와 더불어 해당 오브젝트를 3D Visualization하여 각종 Manipulation을 하는 기법에 대해 서술하도록 한다. 특히, 해석에 필요한 경계 조건이나 하중을 부여하기 위해 노드를 Picking 하는 기법과, 해석 후 객체의 내부 하중 상태 등에 대한 컨투어링을 위해 객체를 분할하는 Cut Section 등에 대해서도 다루도록 한다.

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Application of Geographic Information System for Synthetic Analysis of Multidisciplinary Data in Seawater Intrusion Assessment (해수침투 조사자료의 통합적 해석을 위한 GIS의 적용)

  • Choi Sun-Young;Hwang Seho;Park Kwon Gyu;Shin Je-Hyun;Yoon Wang-Jung
    • Spatial Information Research
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    • v.12 no.3
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    • pp.275-283
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    • 2004
  • In order to effectively, and accurately assess seawater intrusion in coastal area, multidisciplinary data including geophysical, well logging, and hydrogeochemical data should be managed in systematical way. Such systematical management of data is critical key to improve the re-usability of the data as well as the accuracy of the assessment by means of providing a method of synthetic analysis. Therefore, for systematical management of multidisciplinary data in seawater intrusion problem, we have developed a database management system and 3-D visualization interface based on geographic information system in this, study. All geophysical survey, well logging, hydrochemical, as well as drilling, data are classified as attribute data using Microsoft Access, and joined with spatial information based on ArcView. The database management system and 3-D visualization interface to handle these data, also, developed using the script language of ArcView. We think the development of database and 3-D visualization system will improve the efficiency of data management, user-friendliness of data access, and accuracy of data analysis.

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A Design of A Dynamic Configurational Multimedia Spreadsheet for Effective HCI (효과적인 HCI를 위한 동적 재구성 멀티미디어 스프레드쉬트 설계)

  • Jee Sung-Hyun
    • The Journal of the Korea Contents Association
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    • v.6 no.1
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    • pp.14-22
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    • 2006
  • The multimedia visualizational spreadsheet environment is shown to be extremely effective in supporting the organized visualization of multi-dimensional data sets. In this paper, we designed the visualization model that consists of the configurational 2D arrangement of spreadsheet elements at run time and each spreadsheet element has a novel framestack. As the feature, it supports 3D data structure of each element on the proposed model. It enables the visualization spreadsheet 1) to effectively manage, organize, and compactly encapsulate multi-dimensional data sets, 2) to reconfigure cell-structures dynamically according to client request, and 3) to rapidly process interactive user interface. Using several experiments with scientific users, the model has been demonstrated to be a highly interactive visual browsing tool for 2D and 3D graphics and rendering in each frame.

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