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        검색결과 106

        101.
        2007.06 KCI 등재 서비스 종료(열람 제한)
        MOCIE(Ministry of Commerce, Industry and Energy) handles 6 Projects for Intelligent Robot, whose budget is around 40 Million dollars per year. In this paper we have tried to analyze the state of robot technology of the projects. Each sub-projects has been divided according to the technological classification. Two major projects of Next Generation Growth Engine and 21C Frontier show different state each other. The former is focused on the product while the latter on the technology. Output of 21C Frontier should be linked to the Next Generation Growth Engine, otherwise, it will fail to advance. The project management handles only the quantitative performance such as business results, number of prototype, and number of patents and papers. Technological Capability is essential and it should be managed. This paper proposes efficient classification of robot technology and technology index.
        102.
        2007.03 KCI 등재 서비스 종료(열람 제한)
        AbstractIntelligent Robot is considered as one of the Next Generation Growth Engine in many countries. The application fields are expected to be widen from 80's robotics for manufacturing to many applications such as military, space, medical, personal, etc. To reduce the R&D investment risk Technical Roadmap is prepared by Japan, Europe and Korea. In this paper, the technical Roadmap of the countries was analysed to get the idea of future of Robotics. Robotics is considered as one of solutions of future aged society. Robot can assist and company with elderly people in the near future. On the other hand, Robot is considered as a core technology of manufacturing competitive power. Industrial competitiveness also would be dependent on robot technology. Special Service robot has many application areas and each country has different target based on the situation. With the comparison of technical roadmap, we have suggested some ideas to improve Korea's roadmap.
        103.
        2006.12 KCI 등재 서비스 종료(열람 제한)
        Abstract This paper presents a speaker recognition system intended for use in human-robot interaction. The proposed speaker recognition system can achieve significantly high performance in the Ubiquitous Robot Companion (URC) environment. The URC concept is a scenario in which a robot is connected to a server through a broadband connection allowing functions to be performed on the server side, thereby minimizing the stand-alone function significantly and reducing the robot client cost. Instead of giving a robot (client) on-board cognitive capabilities, the sensing and processing work are outsourced to a central computer (server) connected to the high-speed Internet, with only the moving capability provided by the robot. Our aim is to enhance human-robot interaction by increasing the performance of speaker recognition with multiple microphones on the robot side in adverse distant-talking environments. Our speaker recognizer provides the URC project with a basic interface for human-robot interaction.
        104.
        2006.09 KCI 등재 서비스 종료(열람 제한)
        MMORPG(Massively Multiplayer Online Role Playing Game)는 장시간 게임에 접속하여 자신이 맡은 역할을 수행해 나가는 게임으로서, 사용자의 몰입도가 다른 게임에 비해 월등히 높은 게임이며, 게임 내 많은 컨텐츠를 보유하고 있는 게임이다. 그러나 다양한 게임 내 컨텐츠 중 게임의 흥미를 높이는 데 가장 중요한 역할을 하는 NPC(Non Player Character)의 행동 패턴이 너무 단순하므로 게임을 지루하게 만드는 요인으로 작용하고 있으므로, 많은 컨텐츠를 보유했음에도 불구하고 MMORPG는 지루한 게임이라는 인식이 사용자들에게 만연해 있다. 이에 본 논문에서는 NPC에게 성격과 감정을 심어주어, 사용자의 성향에 반응하는 동적인 행동을 보이는 NPC를 생성하고자 한다.
        105.
        2006.09 KCI 등재 서비스 종료(열람 제한)
        지능형 서비스 로봇은 인공지능 및 센서인터페이스 등의 다양한 기능과 IT기술의 접목으로 우리의 생활을 윤택하게 해줄 수 있는 인간 지향적인 성격으로 발전하고 있다. 또한 많은 분야에서 새로운 서비스 개발을 통해서 좀더 인간의 생활에 가까이 접근되어 지고 있다. 한편 국내 초등학교에서 초등교사는 학생 수의 과다로 능동적이기 보다는 수동적인 수업을 하고 있어서 학습 효율성이나 능률성이 떨어지고 있다. 이에 본 연구에서는 발전하고 있는 서비스 로봇 기술로 능
        106.
        2006.09 KCI 등재 서비스 종료(열람 제한)
        In this paper, we introduce visual contexts in terms of types and utilization methods for robust object recognition with intelligent mobile robots. One of the core technologies for intelligent robots is visual object recognition. Robust techniques are strongly required since there are many sources of visual variations such as geometric, photometric, and noise. For such requirements, we define spatial context, hierarchical context, and temporal context. According to object recognition domain, we can select such visual contextx. We also propose a unified framework which can utilize the whole contexts and validates it in real working environment. Finally, we also discuss the furture research directions of object recognition technologies for intelligent robots.
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