• 제목/요약/키워드: Specified Area Capture

검색결과 2건 처리시간 0.015초

SERA Web-Viewer : 사용자 편의성을 향상시킨 웹 브라우저 설계 및 구현 (Sera Web-Viewer : a Convenience-Featured Web Browser)

  • 조영석;김재훈;장익현
    • 융합보안논문지
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    • 제7권4호
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    • pp.61-72
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    • 2007
  • 우리는 웹 브라우저 사용자의 편의성 향상을 목표로 4가지 편의 기능이 통합된 브라우저인 SERA Web-Viewer를 개발하였다. 편의 기능으로는 VPV(Visited Page Viewer), APV(Aligned Page Viewer), USC(User Specified Capture)등이 추가되었으며 UCC(User Created Content)의 핵심 기술인 FLV(FLash Video file) 변환을 위한 VAC(Video and Audio Converter)를 부가기능으로 통합하였다. 편의 기능들은 사용자들이 웹 브라우저를 사용하며 가장 필요로 하는 기능들로 웹브라우저의 사용 빈도가 잦고 사용 시간이 긴 고급 사용자들을 대상으로 조사된 바에 따랐다. 위의 네 가지 통합 기능에 대한 구현 상의 알고리즘과 기술을 제안하였고, 인터넷 익스플로러 6.0의 렌더링(rendering) 기술을 이용한 MDI application 기반의 구현 방법을 코드를 통해 설명한다. 구현된 결과를 134명의 컴퓨터학 또는 멀티미디어 공학을 전공하는 학생들을 대상으로 실시한 설문조사의 결과와 비교하여 통합된 편의 기능들이 웹 브라우저 사용자들에게 실질적으로 도움을 줄 수 있다는 것을 보인다.

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Human-Computer Interaction Based Only on Auditory and Visual Information

  • Sha, Hui;Agah, Arvin
    • Transactions on Control, Automation and Systems Engineering
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    • 제2권4호
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    • pp.285-297
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    • 2000
  • One of the research objectives in the area of multimedia human-computer interaction is the application of artificial intelligence and robotics technologies to the development of computer interfaces. This involves utilizing many forms of media, integrating speed input, natural language, graphics, hand pointing gestures, and other methods for interactive dialogues. Although current human-computer communication methods include computer keyboards, mice, and other traditional devices, the two basic ways by which people communicate with each other are voice and gesture. This paper reports on research focusing on the development of an intelligent multimedia interface system modeled based on the manner in which people communicate. This work explores the interaction between humans and computers based only on the processing of speech(Work uttered by the person) and processing of images(hand pointing gestures). The purpose of the interface is to control a pan/tilt camera to point it to a location specified by the user through utterance of words and pointing of the hand, The systems utilizes another stationary camera to capture images of the users hand and a microphone to capture the users words. Upon processing of the images and sounds, the systems responds by pointing the camera. Initially, the interface uses hand pointing to locate the general position which user is referring to and then the interface uses voice command provided by user to fine-the location, and change the zooming of the camera, if requested. The image of the location is captured by the pan/tilt camera and sent to a color TV monitor to be displayed. This type of system has applications in tele-conferencing and other rmote operations, where the system must respond to users command, in a manner similar to how the user would communicate with another person. The advantage of this approach is the elimination of the traditional input devices that the user must utilize in order to control a pan/tillt camera, replacing them with more "natural" means of interaction. A number of experiments were performed to evaluate the interface system with respect to its accuracy, efficiency, reliability, and limitation.

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