• 제목/요약/키워드: indoor robot

검색결과 409건 처리시간 0.03초

RSSI기반 위치인식기능 지능형 실내 자율 이동로봇 (Intelligent mobile Robot with RSSI based Indoor Location Estimation function)

  • 윤바다;신재욱;김성길;정완영
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2007년도 추계종합학술대회
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    • pp.449-452
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    • 2007
  • RSSI기반의 실내위치인식 시스템과 무선센서네트워크를 이용한 자율 이동 로봇의 기능 중에서 선행적으로 요구되는 지능형 실내위치추정 로봇을 설계, 구현하였다. 지능형 실내위치추정 로봇은 주제어장치로서 Spartan III를 사용하였으며, 현재의 위치 데이터는 계속적으로 Zigbee /IEEE802.15.4 무선통신을 사용하여 블라인드노드로 전송된다. 그리고 로봇에 탑재된 베이스스테이션노드는 블라인드 노드를 통해 수신된 위치 데이터를 수집하여 로봇을 제어하였고 서버로 전송하였다. 이동 중인 로봇은 Magnetic Compass를 사용하여 목적지의 방향을 인식하여 최종 목적지로 이동하였다. 또한 프로그램 내에 장애물회피 알고리즘을 이용하여 효율적이고 능동적으로 목적지에 도달하였다. 로봇에 부착된 베이스스테이션노드를 아용하여 서버프로그램에서 환경 데이터와 위치를 실시간으로 모니터링 할 수 있었으며, 서버프로그램에서의 능동적인 로봇제어가 가능하였다.

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모바일로봇의 정밀 실내주행을 위한 개선된 ORB-SLAM 알고리즘 (Modified ORB-SLAM Algorithm for Precise Indoor Navigation of a Mobile Robot)

  • 옥용진;강호선;이장명
    • 로봇학회논문지
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    • 제15권3호
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    • pp.205-211
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    • 2020
  • In this paper, we propose a modified ORB-SLAM (Oriented FAST and Rotated BRIEF Simultaneous Localization And Mapping) for precise indoor navigation of a mobile robot. The exact posture and position estimation by the ORB-SLAM is not possible all the times for the indoor navigation of a mobile robot when there are not enough features in the environment. To overcome this shortcoming, additional IMU (Inertial Measurement Unit) and encoder sensors were installed and utilized to calibrate the ORB-SLAM. By fusing the global information acquired by the SLAM and the dynamic local location information of the IMU and the encoder sensors, the mobile robot can be obtained the precise navigation information in the indoor environment with few feature points. The superiority of the modified ORB-SLAM was verified to compared with the conventional algorithm by the real experiments of a mobile robot navigation in a corridor environment.

Analysis of Indoor Robot Localization Using Ultrasonic Sensors

  • Naveed, Sairah;Ko, Nak Yong
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제14권1호
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    • pp.41-48
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    • 2014
  • This paper analyzes the Monte Carlo localization (MCL) method, which estimates the pose of an indoor mobile robot. A mobile robot must know where it is to navigate in an indoor environment. The MCL technique is one of the most influential and popular techniques for estimation of robot position and orientation using a particle filter. For the analysis, we perform experiments in an indoor environment with a differential drive robot and ultrasonic range sensor system. The analysis uses MATLAB for implementation of the MCL and investigates the effects of the control parameters on the MCL performance. The control parameters are the uncertainty of the motion model of the mobile robot and the noise level of the measurement model of the range sensor.

무선센서네트워크 기술을 활용한 RSSI기반의 지능형 실내위치추정 로봇 (RSSI based Intelligent Indoor Location Estimation Robot using Wireless Sensor Network technology)

  • 서원교;장성균;신광식;이은아;정완영
    • 한국정보통신학회논문지
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    • 제11권6호
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    • pp.1195-1200
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    • 2007
  • RSSI 기반의 실내위치인식 시스템과 무선센서네트워크를 이용하여 자율 이동 로봇의 기능 중에서 가장 선행적으로 요구되는 위치추정 기능을 가진 지능형 실내위치추정 로봇을 설계, 구현하였다. 지능형 실내위치추정 로봇은 주제어장치로 Spartan III(Xilinx, USA)를 사용하였으며 실내위치인식 시스템에서 현재의 위치데이터를 수집하여 Zigbee/IEEE802.15.4 무선통신으로 전송을 하면 이동로봇에 부착되어 있는 무선센서 네트워크 노드에서 데이터를 수신받아서 위치를 인식하게 되고 Magnetic Compass의 데이터로 로봇이 향하고 있는 방향을 감지하여 목적지로 이동하게 된다. 이렇게 구성된 지능형 실내위치 추정 로봇은 장애물이 없는 평활 실내 공간에서 사용자가 원하는 목적지로 효율적이고 능동적으로 이동할 수 있었다.

무선 센서네트워크 기술을 활용한 RSSI기반의 지능형 실내위치추정 로봇 (RSSI based Intelligent Indoor Location Estimation Robot using Wireless Sensor Network technology)

  • 서원교;장성균;신광식;정완영
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2007년도 춘계종합학술대회
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    • pp.375-378
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    • 2007
  • RSSI기반의 실내위치인식 시스템과 무선센서네트워크를 이용하여 자율 이동 로봇의 기능 중에서 가장 선행적으로 요구되는 위치 추정 기능을 가진 지능형 실내위치추정 로봇을 설계, 구현하였다. 지능형 실내위치추정 로봇은 장치로 Spartan III(Xilinx, USA)를 사용하였으며 실내위치인식 시스템에서 현재의 위치데이터를 수집하여 Zigbee/IEEE802.15.4 무선통신으로 전송을 하면 이동로봇에 부착되어 있는 무선센서네트워크 노드에서 데이터를 수신받아서 위치를 인식하게되고 Magnetic Compass의 데이터로 로봇이 향하고있는 방향을 감지하여 목적지로 이동하게 된다. 이렇게 구성된 지능형 실내위치 추정 로봇은 장애물이 없는 평활 실내 공간에서 사용자가 원하는 목적지로 효율적이고 능동적으로 이동할 수 있다.

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실내 자율주행 로봇을 위한 실내 환경 인식방법 (Indoor Environment Recognition Method for Indoor Autonomous Mobile Robot)

  • 이만희;조황
    • 대한전기학회논문지:시스템및제어부문D
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    • 제54권6호
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    • pp.366-371
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    • 2005
  • For an autonomous mobile robot localization, it is very important for the robot to be able to recognize indoor environment and match a detected object to an object defined within a map developed either online or of offline. Given the map defining the locations of geometric beacons like wall and corner existing in the robot operation environment, this paper presents a stereo ultrasonic sensor based method practically applicable in recognizing the geometric beacons in real-time. The stereo ultrasonic sensor used in the experiment consists of an ultrasonic transmitter and two ultrasonic receivers placed symmetrically about the transmitter Experimental results are provided to demonstrate that the proposed method is more efficient in recognizing wall and coner than the conventional method of using multiple number of transmitter-receiver pairs.

A BIM and UWB integrated Mobile Robot Navigation System for Indoor Position Tracking Applications

  • Park, JeeWoong;Cho, Yong K.;Martinez, Diego
    • Journal of Construction Engineering and Project Management
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    • 제6권2호
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    • pp.30-39
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    • 2016
  • This research presents the development of a self-governing mobile robot navigation system for indoor construction applications. This self-governing robot navigation system integrated robot control units, various positioning techniques including a dead-reckoning system, a UWB platform and motion sensors, with a BIM path planner solution. Various algorithms and error correction methods have been tested for all the employed sensors and other components to improve the positioning and navigation capability of the system. The research demonstrated that the path planner utilizing a BIM model as a navigation site map could effectively extract an efficient path for the robot, and could be executed in a real-time application for construction environments. Several navigation strategies with a mobile robot were tested with various combinations of localization sensors including wheel encoders, sonar/infrared/thermal proximity sensors, motion sensors, a digital compass, and UWB. The system successfully demonstrated the ability to plan an efficient path for robot's movement and properly navigate through the planned path to reach the specified destination in a complex indoor construction site. The findings can be adopted to several potential construction or manufacturing applications such as robotic material delivery, inspection, and onsite security.

Positioning Accuracy on Robot Self-localization by Real-time Indoor Positioning System with SS Ultrasonic Waves

  • Suzuki, Akimasa;Kumakura, Ken;Tomizuka, Daisuke;Hagiwara, Yoshinobu;Kim, Youngbok;Choi, Yongwoon
    • 동력기계공학회지
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    • 제17권5호
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    • pp.100-111
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    • 2013
  • Indoor real-time positioning for multiple targets is required to realize human-robot symbiosis. This study firstly presents positioning accuracy on an autonomous mobile robot controlled by 3-D coordinates that is obtained by a real-time indoor positioning system with spread spectrum (SS) ultrasonic signals communicated by code-division multiple access. Although many positioning systems have been investigated, the positioning system with the SS ultrasonic signals can measure identified multiple 3-D positions in every 70 ms with noise tolerance and error within 100 mm. This system is also robust to occlusion and environmental changes. However, thus far, the positioning errors in an autonomous mobile robot, controlled by these systems using the SS ultrasonic signals, have not been evaluated as an experimental study. Therefore, a positioning experiment for trajectory control is conducted using an autonomous mobile robot and our positioning system. The effectiveness of this positioning method for robot self-localization is shown, from this experiment, because the average control error between the target position and the robot's position at 29 mm is obtained.

발전 설비 감시 점검용 로봇 시스템을 위한 실내 위치 인식 시스템 설계 (Indoor Localization System for Field Robot System of Power Plant Facilities Surveillance)

  • 정창기;이재경;박준영;조병학
    • 전기학회논문지
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    • 제57권12호
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    • pp.2308-2312
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    • 2008
  • As power plant facilities are being deteriorated, their safety is getting more important, and more routine surveillance is being required. For this purpose, this paper presents an indoor localization system for field robot system which performs the surveillance of power plant facilities instead of human workers from the viewpoint of the workers' safety and work efficiency.

선택적 Anchors 기반 Indoor GPS 및 EKF를 이용한 이동 로봇 위치 추정 (Localization for Mobile Robot by Selective Anchors in Indoor GPS and EKF)

  • 강한구;윤재오;이지홍
    • 로봇학회논문지
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    • 제6권1호
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    • pp.58-68
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    • 2011
  • This paper proposes a technique of indoor localization for mobile robot by so called indoor GPS and EKF. Basically the concept of indoor GPS is similar outdoor GPS, and the indoor GPS gets distances between Anchors and Tag by a ranging method of CSS and then estimates the coordinate by distances and known Anchor positions. After we performed performance test of indoor GPS system in ideal and multipath environment, we configured that the indoor GPS has internal error factors and external error factors. This paper handled a multipath problem belonging to external error factors. At first various direct physical method are introduced to fix the multipath problems, and as expected we got errors corrected considerably. And then the method of selective anchors for indoor GPS is applied. With these two level improvement of indoor GPS performance, EKF(Extended Kalman Filter) is applied to mobile robot in indoor environment. The usefulness of the proposed methods are shown by a series of experiments in a environment giving contaminated data by multipath.