• Title/Summary/Keyword: Screen cursor control

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A Study on the Moving Iris Tracking and the Screen Cursor Controlling (홍채의 이동추적과 화면커서 제어에 관한 연구)

  • Chai, Duck-Hyun;Lee, Seung-Yong;Lee, Young-Woo;Ryu, Kwang-Ryol
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • v.9 no.2
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    • pp.332-335
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    • 2005
  • A Study on the moving iris tracking and the screen cursor controlling is presented in this paper. The screen cursor is moved by center position of iris moving to extent of eye. The experimental result shows that the moving of iris and screen cursor are accord with distance and size of screen for the optimal tolerance is reduced the tracking error.

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Communications with a Brain-wave bio-potential based computer interface

  • Choi, Kyoung-Ho;Minoru, Sasaki
    • 제어로봇시스템학회:학술대회논문집
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    • 2001.10a
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    • pp.46.3-46
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    • 2001
  • The overall aim of this research is to develop a computer communication interface based on brain-wave bio potentials for physically disabled people. The work focuses on using EOG and EMG signals to input characters one by one using cursor movements on a GUI screen. The Cyberlink TM system is used to acquire brain waves in real time with electrodes. EMG and EOG signals are used to direct a cursor in order to select, or to click on a character on the screen. We present a novel method for automatic EOG pattern detection by using wavelet transforms with a neuro-fuzzy approach ...

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A study of Satellite Image-Based Stereoscopic Vision System (위성영상 관련 입체도시시스템 개발에 관한 연구)

  • 김감래;김훈정;김주용
    • Proceedings of the Korean Society of Surveying, Geodesy, Photogrammetry, and Cartography Conference
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    • 2004.04a
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    • pp.239-243
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    • 2004
  • It does not exist almost that Most satellite image has both high spectral and spatial resolution. In order to apply the satellite image for to be actual, we need numerical and analytical technique development to improve the resolution. Specially in the function of solid illustration, we represent the solid image through the image generation to solid screen. The main function includes magnification, reduction, screen center movement, Panning, territory magnification. The method to process the image includes histogram and contrast modulation. Afterwards, we will develop the function includes 3-dimension cursor to control the elevation position and calculate the ground coordination automatically. There is the layer control includes the representation and the edition of 3D vector, extraction the Z value by On the Ground and digital elevation.

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A Study on The Screen Cursor Control using Gaze Tracking (응시 위치 추적을 이용한 스크린 커서 제어)

  • Jang, Dong-Hyun;Kim, Chung-Kyue
    • Proceedings of the Korea Information Processing Society Conference
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    • 2006.11a
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    • pp.113-116
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    • 2006
  • 컴퓨터의 급속한 발전 속도와 맞물려 사용자의 위지나 몸짓, 감성을 인지하는 보다 편리하고 자연스러운 휴먼 인터페이스에 대한 요구가 늘어나고 있다. 휴면 인터페이스 가운데 응시 위치 추적은 현재 사용자가 쳐다보고 있는 위치를 컴퓨터 시각 인식 방법을 통하여 파악하는 연구이다. 본 논문에서는 여러 감성 컴퓨터 인터페이스 중 눈동자를 통해 컴퓨터의 입력장치를 간접적으로 제어하는 방법에 대해 기술한다. 웹 카메라를 통해 입력 받은 영상을 이용하여 눈동자의 위치 이동을 탐색하여 마우스를 제어한다.

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Dial Menu User Interface Using Touch Screen (터치스크린을 이용한 다이얼 메뉴 유저 인터페이스)

  • Choi, Jung-Hwan;Kim, Youn-Woo;Jang, Hyun-Su;Eom, Young-Ik
    • 한국HCI학회:학술대회논문집
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    • 2008.02a
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    • pp.584-589
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    • 2008
  • The in put system using the touch screen directly makes the input signals by the contact on the screen without the assistance of peripherals such as a pen or hands. These kinds of input systems using the flexible hands is maximizing suppleness and intuition of the input rather than those systems using a keyboard or a mouse which are moving a cursor or typing a word. However, using hands for an input may give rise to a mistake in control. And there are few interfaces utilizing the touch screen. Incorrectness and insufficiency of the interface are the weak point of the touch screen systems. In this paper, we propose the dial menu user interface for the mobile devices using touch screen for an efficient input. In this method, it consists of 2 states(Inactive states, Active states) and 4 actions(Rotation, Zoom in, and Zoom out, and Click). The intuitive control utilizing the suggested method overcomes the incorrect pointing, weak point of the touch screen system, and boosts the searching menu by utilizing the drag function of the touch screen.

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Tangible Interaction : Application for A New Interface Method for Mobile Device -Focused on development of virtual keyboard using camera input - (체감형 인터랙션 : 모바일 기기의 새로운 인터페이스 방법으로서의 활용 -카메라 인식에 의한 가상 키보드입력 방식의 개발을 중심으로 -)

  • 변재형;김명석
    • Archives of design research
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    • v.17 no.3
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    • pp.441-448
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    • 2004
  • Mobile devices such as mobile phones or PDAs are considered as main interlace tools in ubiquitous computing environment. For searching information in mobile device, it should be possible for user to input some text as well as to control cursor for navigation. So, we should find efficient interlace method for text input in limited dimension of mobile devices. This study intends to suggest a new approach to mobile interaction using camera based virtual keyboard for text input in mobile devices. We developed a camera based virtual keyboard prototype using a PC camera and a small size LCD display. User can move the prototype in the air to control the cursor over keyboard layout in screen and input text by pressing a button. The new interaction method in this study is evaluated as competitive compared to mobile phone keypad in left input efficiency. And the new method can be operated by one hand and make it possible to design smaller device by eliminating keyboard part. The new interaction method can be applied to text input method for mobile devices requiring especially small dimension. And this method can be modified to selection and navigation method for wireless internet contents on small screen devices.

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Improvement of Smartphone Interface Using AR Marker (AR 마커를 이용한 스마트폰 인터페이스의 개선)

  • Kang, Yun-A;Han, Soon-Hung
    • Korean Journal of Computational Design and Engineering
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    • v.16 no.5
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    • pp.361-369
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    • 2011
  • As smartphones came into wide use recently, it has become increasingly popular not only among young people, but middle-aged people as well. Most smartphones use capacitive full touch screen, so touch commands are made by fingers unlike the PDAs in the past that use touch pens. In this case, a significant portion of the smartphone's screen is blocked by the finger so it is impossible to see the screens around the finger touching the screen, and difficulty occurs in precise control used for small buttons such as qwerty keyboard. To solve this problem, this research proposes a method of using simple AR markers to improve the interface of smartphones. Sticker-form marker is attached to fingernails and placed in front of the smartphone camera Then, the camera image of the marker is analyzed to determine the orientation of the marker to perceive as onRelease() or onPress() of the mouse depending on the marker's angle of rotation, and use its position as the position of the mouse cursor. This method can enable click, double-click, drag-and-drop used in PCs as well as touch, slide, long-touch-input in smartphones. Through this research, smartphone inputs can be made more precise and simple, and show the possibility of the application of a new concept of smartphone interface.

A Study On Positioning Of Mouse Cursor Using Kinect Depth Camera (Kinect Depth 카메라를이용한 마우스 커서의 위치 선정에 관한 연구)

  • Goo, Bong-Hoe;Lee, Seung-Ho
    • Journal of IKEEE
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    • v.18 no.4
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    • pp.478-484
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    • 2014
  • In this paper, we propose new algorithm for positioning of mouse cursor using fingertip direction on kinect depth camera. The proposed algorithm uses center of parm points from distance transform when fingertip point toward screen. Otherwise, algorithm use fingertip points. After image preprocessing, the center of parm points is calculated from distance transform results. If the direction of the finger towards the camera becomes close to the distance between the fingertip point and center of parm point, it is possible to improve the accuracy of positioning by using the center of parm point. After remove arm on image, the fingertip points is obtained by using a pixel on the long distance from the center of the image. To calculate accuracy of mouse positioning, we selected any 5 points. Also, we calculated error rate between reference points and mouse points by performed 500 times. The error rate results could be confirmed the accuracy of our algorithm indicated an average error rate of less than 11%.

Implementation of Untouched Interactive Digital Signage Control using Kinect (키넥트를 사용한 터치 없는 디지털 사이니지 제어기의 구현)

  • Kim, Jiyoung;Lee, Youngkyung;Baek, Wookjin;An, Beongku
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.14 no.4
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    • pp.127-132
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    • 2014
  • In this paper, we propose a digital signage method that can control the contents of the screen and download the desired files to individual smart terminal with no touch of digital signage screen by using Kinect. The main features and contributions of the proposed method are as follows. First, can solve the problems such as the risk of bacterial infection, not cleanliness on the screen as well as maximize advertising effectiveness. Second, can support bi-directional communications with computer while we touch only wanted advertisements. The performance evaluation shows the effectiveness of the proposed method. Especially, we can see that the proposed system operates through the recognition of user's actions when the cursor is within the scope of a certain coordinate and the file transfer time to download information is different depending on the PC performance and the version of personal smart device.

Design of a Background Image Based Multi-Degree-of-Freedom Pointing Device (배경영상 기반 다자유도 포인팅 디바이스의 설계)

  • Jang, Suk-Yoon;Kho, Jae-Won
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.45 no.6
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    • pp.133-141
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    • 2008
  • As interactive multimedia have come into wide use, user interfaces such as remote controllers or classical computer mice have several limitations that cause inconvenience. We propose a vision-based pointing device to resolve this problem. We analyzed the moving image from the camera which is embedded in the pointing device and estimate the movement of the device. The pose of the cursor can be determined from this result. To process in the real time, we used the low resolution of $288{\times}208$ pixel camera and comer points of the screen were tracked using local optical flow method. The distance from screen and device was calculated from the size of screen in the image. The proposed device has simple configurations, low cost, easy use, and intuitive handhold operation like traditional mice. Moreover it shows reliable performance even in the dark condition.