• Title/Summary/Keyword: 시선 기반 인터페이스

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Design of dataglove based multimodal interface for 3D object manipulation in virtual environment (3 차원 오브젝트 직접조작을 위한 데이터 글러브 기반의 멀티모달 인터페이스 설계)

  • Lim, Mi-Jung;Park, Peom
    • 한국HCI학회:학술대회논문집
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    • 2006.02a
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    • pp.1011-1018
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    • 2006
  • 멀티모달 인터페이스는 인간의 제스처, 시선, 손의 움직임, 행동의 패턴, 음성, 물리적인 위치 등 인간의 자연스러운 행동들에 대한 정보를 해석하고 부호화하는 인지기반 기술이다. 본 논문에서는 제스처와 음성, 터치를 이용한 3D 오브젝트 기반의 멀티모달 인터페이스를 설계, 구현한다. 서비스 도메인은 스마트 홈이며 사용자는 3D 오브젝트 직접조작을 통해 원격으로 가정의 오브젝트들을 모니터링하고 제어할 수 있다. 멀티모달 인터랙션 입출력 과정에서는 여러 개의 모달리티를 병렬적으로 인지하고 처리해야 하기 때문에 입출력 과정에서 각 모달리티의 조합과 부호화 방법, 입출력 형식 등이 문제시된다. 본 연구에서는 모달리티들의 특징과 인간의 인지구조 분석을 바탕으로 제스처, 음성, 터치 모달리티 간의 입력조합방식을 제시하고 멀티모달을 이용한 효율적인 3D Object 인터랙션 프로토타입을 설계한다.

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Real Time Gaze Discrimination for Human Computer Interaction (휴먼 컴퓨터 인터페이스를 위한 실시간 시선 식별)

  • Park Ho sik;Bae Cheol soo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.3C
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    • pp.125-132
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    • 2005
  • This paper describes a computer vision system based on active IR illumination for real-time gaze discrimination system. Unlike most of the existing gaze discrimination techniques, which often require assuming a static head to work well and require a cumbersome calibration process for each person, our gaze discrimination system can perform robust and accurate gaze estimation without calibration and under rather significant head movement. This is made possible by a new gaze calibration procedure that identifies the mapping from pupil parameters to screen coordinates using generalized regression neural networks (GRNNs). With GRNNs, the mapping does not have to be an analytical function and head movement is explicitly accounted for by the gaze mapping function. Futhermore, the mapping function can generalize to other individuals not used in the training. To further improve the gaze estimation accuracy, we employ a reclassification scheme that deals with the classes that tend to be misclassified. This leads to a 10% improvement in classification error. The angular gaze accuracy is about 5°horizontally and 8°vertically. The effectiveness of our gaze tracker is demonstrated by experiments that involve gaze-contingent interactive graphic display.

Real Time Gaze Discrimination for Computer Interface (컴퓨터 인터페이스를 위한 실시간 시선 식별)

  • Hwang, Suen-Ki;Kim, Moon-Hwan
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.3 no.1
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    • pp.38-46
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    • 2010
  • This paper describes a computer vision system based on active IR illumination for real-time gaze discrimination system. Unlike most of the existing gaze discrimination techniques, which often require assuming a static head to work well and require a cumbersome calibration process for each person, our gaze discrimination system can perform robust and accurate gaze estimation without calibration and under rather significant head movement. This is made possible by a new gaze calibration procedure that identifies the mapping from pupil parameters to screen coordinates using generalized regression neural networks (GRNNs). With GRNNs, the mapping does not have to be an analytical function and head movement is explicitly accounted for by the gaze mapping function. Furthermore, the mapping function can generalize to other individuals not used in the training. To further improve the gaze estimation accuracy, we employ a reclassification scheme that deals with the classes that tend to be misclassified. This leads to a 10% improvement in classification error. The angular gaze accuracy is about $5^{\circ}$horizontally and $8^{\circ}$vertically. The effectiveness of our gaze tracker is demonstrated by experiments that involve gaze-contingent interactive graphic display.

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A Study on Eye Tracking Techniques using Wearable Devices (웨어러블향(向) 시선추적 기법에 관한 연구)

  • Jaehyuck Jang;Jiu Jung;Junghoon Park
    • Smart Media Journal
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    • v.12 no.3
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    • pp.19-29
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    • 2023
  • The eye tracking technology is widespread all around the society, and is demonstrating great performances in both preciseness and convenience. Hereby we can glimpse new possibility of an interface's conduct without screen-touching. This technology can become a new way of conversation for those including but not limited to the patients suffering from Lou Gehrig's disease, who are paralyzed each part by part of the body and finally cannot help but only moving eyes. Formerly in that case, the patients were given nothing to do but waiting for the death, even being unable to communicate with there families. A new interface that harnesses eyes as a new means of communication, although it conveys great difficulty, can be helpful for them. There surely are some eye tracking systems and equipment for their exclusive uses on the market. Notwithstanding, several obstacles including the complexity of operation and their high prices of over 12 million won($9,300) are hindering universal supply to people and coverage for the patients. Therefore, this paper suggests wearable-type eye tracking device that can support minorities and vulnerable people and be occupied inexpensively and study eye tracking method in order to maximize the possibility of future development across the world, finally proposing the way of designing and developing a brought-down costed eye tracking system based on high-efficient wearable device.

Usability Test by Integrated Analysis Model - With Emphasis on Eyegaze Analysis of Mobile Interface Design (통합 해석 모델을 활용한 사용성 평가 -모바일 인터페이스 디자인의 시선추적 분석을 중심으로-)

  • 성기원;이건표
    • Archives of design research
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    • v.17 no.3
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    • pp.245-254
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    • 2004
  • In Accordance with the change of design paradigm, the design process has changed into user-centered workflow from designer-centered workflow. Since the purpose of the past research methods is quantitative analysis or the understanding of the present situation, it doesn't fit in practical design that expressed the user's needs. Therefore, the real data about what they see and how they feel will be useful for the user-centered design. This paper's objective is to analyze eye-movement recordings and pupil size of user for mobile interface design. For this objective, it was experimented on that the user's eyegaze data of using a mobile phone by the Eyegaze Interface System, and analyzed three levels of user's task performance. The results provided evaluation of new developed and old existing interface design of mobile phone by the experiment of eye-movement recordings and pupil size. The benefit of results is compliment of the limitation of current usability test through visual characteristics of design and qualitative data of user.

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MyWorkspace: VR Platform with an Immersive User Interface (MyWorkspace: 몰입형 사용자 인터페이스를 이용한 가상현실 플랫폼)

  • Yoon, Jong-Won;Hong, Jin-Hyuk;Cho, Sung-Bae
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.52-55
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    • 2009
  • With the recent development of virtual reality, it has been actively investigated to develop user interfaces for immersive interaction. Immersive user interfaces improve the efficiency and the capability of information processing in the virtual environment providing various services, and provide effective interaction in the field of ubiquitous and mobile computing. In this paper, we propose an virtual reality platform "My Workspace" which renders an 3D virtual workspace by using an immersive user interface. We develop an interface that integrates an optical see-through head-mounted display, a Wii remote controller, and a helmet with infrared LEDs. It estimates the user's gaze direction in terms of horizontal and vertical angles based on the model of head movements. My Workspace expands the current 2D workspace based on monitors into the layered 3D workspace, and renders a part of 3D virtual workspace corresponding to the gaze direction. The user can arrange various tasks on the virtual workspace and switch each task by moving his head. In this paper, we will also verify the performance of the immersive user interface as well as its usefulness with the usability test.

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The Virtual Model House System using Modeling-based Eyetracking (모델링 기반 시선추적을 이용한 가상모델하우스 시스템)

  • Lee, Dong-Jin;Lee, Ki-Young
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.10 no.5
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    • pp.223-227
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    • 2010
  • Since the most of existing virtual model house used non-immersive type virtual reality technology, it was made to control using direct input type device such as keyboard and mouse. But in this paper realized not only direct data entry method but also indirect data entry method using eyetracking technology through universal webcam for virtual model house based upon modeling. In this paper showed the position of pointer controlled according to the relative movement of pupils or the part of function related to the equipment entry called by comparing the value of gray after extracting the area of pupil in the user' video data received from webcam. Such a method provided the convenience of navigation and interface to the user.

Gaze Detection by Computing Facial and Eye Movement (얼굴 및 눈동자 움직임에 의한 시선 위치 추적)

  • 박강령
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.41 no.2
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    • pp.79-88
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    • 2004
  • Gaze detection is to locate the position on a monitor screen where a user is looking by computer vision. Gaze detection systems have numerous fields of application. They are applicable to the man-machine interface for helping the handicapped to use computers and the view control in three dimensional simulation programs. In our work, we implement it with a computer vision system setting a IR-LED based single camera. To detect the gaze position, we locate facial features, which is effectively performed with IR-LED based camera and SVM(Support Vector Machine). When a user gazes at a position of monitor, we can compute the 3D positions of those features based on 3D rotation and translation estimation and affine transform. Finally, the gaze position by the facial movements is computed from the normal vector of the plane determined by those computed 3D positions of features. In addition, we use a trained neural network to detect the gaze position by eye's movement. As experimental results, we can obtain the facial and eye gaze position on a monitor and the gaze position accuracy between the computed positions and the real ones is about 4.8 cm of RMS error.

3D View Controlling by Using Eye Gaze Tracking in First Person Shooting Game (1 인칭 슈팅 게임에서 눈동자 시선 추적에 의한 3차원 화면 조정)

  • Lee, Eui-Chul;Cho, Yong-Joo;Park, Kang-Ryoung
    • Journal of Korea Multimedia Society
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    • v.8 no.10
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    • pp.1293-1305
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    • 2005
  • In this paper, we propose the method of manipulating the gaze direction of 3D FPS game's character by using eye gaze detection from the successive images captured by USB camera, which is attached beneath HMD. The proposed method is composed of 3 parts. In the first fart, we detect user's pupil center by real-time image processing algorithm from the successive input images. In the second part of calibration, the geometric relationship is determined between the monitor gazing position and the detected eye position gazing at the monitor position. In the last fart, the final gaze position on the HMB monitor is tracked and the 3D view in game is control]ed by the gaze position based on the calibration information. Experimental results show that our method can be used for the handicapped game player who cannot use his (or her) hand. Also, it can increase the interest and immersion by synchronizing the gaze direction of game player and that of game character.

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W3C based Interoperable Multimodal Communicator (W3C 기반 상호연동 가능한 멀티모달 커뮤니케이터)

  • Park, Daemin;Gwon, Daehyeok;Choi, Jinhuyck;Lee, Injae;Choi, Haechul
    • Journal of Broadcast Engineering
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    • v.20 no.1
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    • pp.140-152
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    • 2015
  • HCI(Human Computer Interaction) enables the interaction between people and computers by using a human-familiar interface called as Modality. Recently, to provide an optimal interface according to various devices and service environment, an advanced HCI method using multiple modalities is intensively studied. However, the multimodal interface has difficulties that modalities have different data formats and are hard to be cooperated efficiently. To solve this problem, a multimodal communicator is introduced, which is based on EMMA(Extensible Multimodal Annotation Markup language) and MMI(Multimodal Interaction Framework) of W3C(World Wide Web Consortium) standards. This standard based framework consisting of modality component, interaction manager, and presentation component makes multiple modalities interoperable and provides a wide expansion capability for other modalities. Experimental results show that the multimodal communicator is facilitated by using multiple modalities of eye tracking and gesture recognition for a map browsing scenario.