• Title/Summary/Keyword: Virtual and augmented reality

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Study on 3D AR of Education Robot for NURI Process (누리과정에 적용할 교육로봇의 가상환경 3D AR 연구)

  • Park, Young-Suk;Park, Dea-Woo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2013.05a
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    • pp.209-212
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    • 2013
  • The Nuri process of emphasis by the Ministry of Education to promote is standardized curriculum at the national level for the education and care. It is to improve the quality of pre-school education and Ensure a fair starting line early in life and It emphasizes character education in all areas of the window. Nuri the process of development of a the insect robot for the Creativity education Increased the interesting and educational effects. Assembly and the effect on learning of educational content using a VR educational robot using the existing floor assembly using the online website to help assemble and learning raised. Order to take advantage of information technology in the information-based society requires the active interest and motivation in learning, creative learning toddlers learning robot are also needed. A three-dimensional model of the robot, and augmented by linking through the marker, the target marker and the camera relative to the coordinate system of augmented reality, seeking to convert the marker to be used in augmented reality marker patterns within a pre-defined patternto be able to make a decision on what of. The fusion of a smart education through training and reinforcement the educational assembly of the robot in the real world window that is represented by a virtual environment in this paper to present a new form of state-of-the-art smart training, you will want to lay the foundation of the nation through the early national talent nurturing talent.

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Design of Image Metadata for Mobile Augmented Reality (모바일 증강현실을 위한 영상 메타데이터 설계)

  • Lee, Yong-Hwan;Park, Je-Ho;Yoon, Kyoungro;Kim, Cheong-Ghil;Kim, Youngseop
    • Journal of Digital Contents Society
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    • v.15 no.2
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    • pp.263-270
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    • 2014
  • This paper proposes a new metadata schema for effective mobile service of augmented reality technology, which is used in the convergence of media into a frame among the real world image and objects of virtual world. The proposed metadata schema is extended from JPSearch Core Metadata Schema (ISO/IEC 24800-2 International Standard) with analysis of the functionalities under industrial requirements, and enables to provide an effective application in the actual services. In addition, the proposed schema is available to organize the exchange of information between heterogeneous systems. With development of the prototype system, the proposed metadata schema is going to be submitted and verified under ISO/IEC JTC1 SC29 WG1 JPEG AR standard project.

Implementation of Diesel Engine Training Simulation based on Virtual Reality (e-Training 사례 : 가상현실 기반의 디젤엔진훈련 시뮬레이션 개발)

  • Song, Eun-Jee;Seo, Dong-Hee
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.05a
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    • pp.567-568
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    • 2015
  • 인터넷이 활성화 되면서 웹기반 교육으로 e-Training이 발전되었다. e-Training은 업무에 필요한 수행능력을 습득 향상 시키기 위하여 정보통신 기술, 장비, 환경을 활용하여 실시하는 교육훈련이다. e-Training에 포함되는 기술에는 시뮬레이션, 3D 가상현실, 증강현실 등이 있다. 본 연구에서는 가상현실 기반의 디젤엔진훈련 시뮬레이션을 개발하였다. 제안한 시스템은 3차원 디스플레이 시스템을 통해 몰입감과 상호작용 교육훈련방식을 도입하여 3D입체형 화면안의 시야가 실제 현실과 같은 몰입의 효과가 있으며 엔진부품의 이름과 기능 등을 게임화를 통해 교육 훈련하는 시스템으로써 시뮬레이션을 통해 필요한 문제풀이를 재미있게 할 수 있어 학습능률에 효과가 있다.

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Bubble Popping Augmented Reality System Using a Vibro-Tactile Haptic Mouse (진동촉각 햅틱 마우스 기반 버블포핑 증강현실 시스템)

  • Jung, Da-Un;Lee, Woo-Keun;Jang, Seong-Eun;Kim, Man-Bae
    • Journal of Broadcast Engineering
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    • v.15 no.6
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    • pp.715-722
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    • 2010
  • As one of applications in augmented realities, this paper presents a bubble popping system utilizing a haptic vibro-tactile mouse. In this system, virtual bubbles randomly float in the 3D space. By using the vibro-tactile mouse grabbed by a user, the bubbles are popped when they are touched by the mouse in the 3D space. Then a bubble popping effect with addition mouse vibration is delivered to the user's hand through the mouse. The proposed system is developed on ARToolkit environment. Therefore, basic components such as a camera and a marker pattern are required. The systems is composed of a vibro-haptic mouse, a webcam, a marker pattern, a graphic bubble object, and graphic mouse. Mouse vibration as well as bubble fade-out effect is delivered. Therefore, the combination of visual and tactile bubble popping effects outperforms the usage of a single effect in the experience of augmented reality.

Implementation of virtual reality for interactive disaster evacuation training using close-range image information (근거리 영상정보를 활용한 실감형 재난재해 대피 훈련 가상 현실 구현)

  • KIM, Du-Young;HUH, Jung-Rim;LEE, Jin-Duk;BHANG, Kon-Joon
    • Journal of the Korean Association of Geographic Information Studies
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    • v.22 no.1
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    • pp.140-153
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    • 2019
  • Cloase-range image information from drones and ground-based camera has been frequently used in the field of disaster mitigation with 3D modeling and mapping. In addition, the utilization of virtual reality(VR) is being increased by implementing realistic 3D models with the VR technology simulating disaster circumstances in large scale. In this paper, we created a VR training program by extracting realistic 3D models from close-range images from unmanned aircraft and digital camera on hand and observed several issues occurring during the implementation and the effectiveness in the case of a VR application in training for disaster mitigation. First of all, we built up a scenario of disaster and created 3D models after image processing with the close-range imagery. The 3D models were imported into Unity, a software for creation of augmented/virtual reality, as a background for android-based mobile phones and VR environment was created with C#-based script language. The generated virtual reality includes a scenario in which the trainer moves to a safe place along the evacuation route in the event of a disaster, and it was considered that the successful training can be obtained with virtual reality. In addition, the training through the virtual reality has advantages relative to actual evacuation training in terms of cost, space and time efficiencies.

Interactive Augmented-Reality Authoring Tool (대화식 증강현실 저작 도구)

  • Kim, Iljin;Seo, Jinseok
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2009.10a
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    • pp.181-184
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    • 2009
  • Authoring AR(augmented-reality) contents not only takes too much time and cost, but also needs the help of professionals in the areas of computer science, VR(virtual reality), AR, 3D computer graphics, computer vision, etc. This paper proposes an authoring tool to allow non-programmers as content creators to author AR contents easily and quickly. An ideal AR authoring tool, which is the goal of our research, faces four major challenges from a technical point of view: (1) easy and quick authoring, (2) strong power of expression, (3) ease of verification and validation, (4) interactive authoring and debugging. To tackle with the challenges, we employ the interactive framework approach using formal and visual specification techniques.

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A Study on HMD-AR based Industrial Training System for Live Machinery Operation

  • Lee, Beomhee;Choi, Jinyeong;Choi, Byunghoon;Lee, Jisung;Min, Byungjun;Cho, Juphil
    • International Journal of Internet, Broadcasting and Communication
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    • v.10 no.1
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    • pp.65-70
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    • 2018
  • As technological development is progressing recently, various technologies are actively being studied in the course of the 4th industrial revolution. So, even in the educational field, virtual reality and augmented reality technology are used in educational environments, but specialized additional equipment is required and the price is very expensive. Also, since a plurality of equipment are required for a large number of people, it is urgent to study the technology that can be effectively applied to the industrial education field. So in this paper, we propose an industrial training system for HMD-AR, MPEG-DASH and SOAP based HTTP based Live Machinery Operation using Smartphone to solve the problems of existing system.

Virtual Science Lab - Sensible Human Body Learning System (가상 과학 실험실 - 체감형 인체 구조 학습 시스템)

  • Kim, Ki-Min;Kim, Jae-Il;Kim, Seok-Yeol;Park, Jin-Ah
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.2078-2079
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    • 2009
  • This research suggests the framework for human body learning system using various forms of bidirectional interfaces. The existing systems mostly use the limited and unidirectional methods which are merely focused on the visual information. Our system provides more realistic visual information using 3D organ models from the real human body. Also we combine the haptic and augmented reality techniques into our system for wider range of interaction means. Through this research, we aim to overcome the limitation of existing science education systems and explore the effective scheme to fuse the real and virtual educational environment into one.

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Research on Advanced Navigation Aids System based on Augmented Reality (증강현실 기반 차세대 항해지원 시스템에 관한 연구)

  • Oh, Jae-Yong;Kwon, Oh-Seok
    • Journal of Navigation and Port Research
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    • v.40 no.4
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    • pp.183-188
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    • 2016
  • Many maritime accidents have been caused by human-error including such things as inadequate watch keeping and/or mistakes in ship handling. Also, new navigational equipment has been developed using IT technology to provide various information for safe navigation. Despite these efforts, the reduction of maritime accidents has not occurred to the degree expected because, navigational equipment provides too much information, and this information is not well organized, such that users feel it to be complicated rather than helpful. In this point of view, the method of representation of navigational information is more important than the quantity of that information and research is required on the representation of information to make that information more easily understood and to allow decisions to be made correctly and promptly. In this paper, we adopt Augmented Reality (AR) technologies for the representation of information. AR is a 3D computer graphics technology that blends virtual reality and the real world. Recently, this technology has been widely applied in our daily lives because it can provide information more effectively to users. Therefore, we propose a new concept, a navigational system based on AR technology; we review experimental results from a ship-handling simulator and from an open sea test to verify the efficiency of the proposed system.

Augmented Reality to Localize Individual Organ in Surgical Procedure

  • Lee, Dongheon;Yi, Jin Wook;Hong, Jeeyoung;Chai, Young Jun;Kim, Hee Chan;Kong, Hyoun-Joong
    • Healthcare Informatics Research
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    • v.24 no.4
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    • pp.394-401
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    • 2018
  • Objectives: Augmented reality (AR) technology has become rapidly available and is suitable for various medical applications since it can provide effective visualization of intricate anatomical structures inside the human body. This paper describes the procedure to develop an AR app with Unity3D and Vuforia software development kit and publish it to a smartphone for the localization of critical tissues or organs that cannot be seen easily by the naked eye during surgery. Methods: In this study, Vuforia version 6.5 integrated with the Unity Editor was installed on a desktop computer and configured to develop the Android AR app for the visualization of internal organs. Three-dimensional segmented human organs were extracted from a computerized tomography file using Seg3D software, and overlaid on a target body surface through the developed app with an artificial marker. Results: To aid beginners in using the AR technology for medical applications, a 3D model of the thyroid and surrounding structures was created from a thyroid cancer patient's DICOM file, and was visualized on the neck of a medical training mannequin through the developed AR app. The individual organs, including the thyroid, trachea, carotid artery, jugular vein, and esophagus were localized by the surgeon's Android smartphone. Conclusions: Vuforia software can help even researchers, students, or surgeons who do not possess computer vision expertise to easily develop an AR app in a user-friendly manner and use it to visualize and localize critical internal organs without incision. It could allow AR technology to be extensively utilized for various medical applications.