• 제목/요약/키워드: Obstacle localization

검색결과 53건 처리시간 0.031초

스테레오 비전 기반의 도로 특징 정보 추출 및 장애 물체 검출 (A Road Feature Extraction and Obstacle Localization Based on Stereo Vision)

  • 이충희;임영철;권순;이종훈
    • 전자공학회논문지SC
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    • 제46권6호
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    • pp.28-37
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    • 2009
  • 본 논문에서는 지역 최대 빈도 값을 이용하여 V-시차 맵 상에서 도로 특징 정보를 추출하고 이를 이용한 장애물체 검출 방법을 제안한다. 기존 방법은 장애물체의 크기 수 및 종류 등이 변경되면 추출 성능이 영향을 받는다. 특히 크기가 큰 장애물체나 중앙분리대와 같은 연속적인 장애물체에 대한 추출이 어렵다. 이를 해결하기 위하여 주변 상황 영향을 적게 받는 도로 특징 정보를 새로운 장애물체의 유무 판단 기준으로 사용한다. 도로 특징 정보는 V-시차 맵 상에서 특정 열에 장애물체가 많이 존재하는 상황에서도 전체적인 그 특징을 잘 유지함으로 그 강건성이 높아 새로운 판단기준으로 적합하다. 그리고 V-시차 맵 상에서 도로 특징 정보를 쉽게 추출하기 위하여 먼저 지역 최대 빈도 값을 이용하여 이진 V-시차 맵을 생성한다. 그리고 기존 중간 값과 비교하여 도로 특징 정보가 아닌 부분은 제거하고, 마지막으로 보간을 통하여 최종 도로 특징 정보를 추출한다. 이를 시차 맵의 각 행과 비교하여 장애물체 영역을 검출한다. 또한 장애물체 영역 검출 성능을 향상시키기 위하여 검출 단계에서 발생한 노이즈를 제거하기 위한 후처리 과정도 제안한다. 그리고 실제 도로 영상에 적용한 실험을 통하여 제안한 알고리즘이 기존 방법에 비해 장애물체 검출 성능이 우수함을 보인다.

시각 장애인을 위한 장애물 경보기의 개발 (Development of Obstacle Alarm for the Visually Impaired)

  • 심현민;이응혁;민홍기;홍승홍
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 하계종합학술대회 논문집(5)
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    • pp.113-116
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    • 2002
  • In this paper, we propose the sound-mapping algorithm of the detected obstacle by ultrasonic sensors. We apply this algorithm to a Obstacle alarm for the visually impaired. In our system, we acquire obstacles information using ultrasonic sensors, and transform two-dimensional and distance information into sound-imaging information and vibrator with azimuth (direction) and distance. We implement this system with ultrasonic sensors to more effective expression of the obstacle information. The distance of an obstacle can be expressed by sound pressure level, and azimuth of the obstacles can be expressed by inter-aural time difference (ITD) and inter-aural level difference (ILD) that are two important cues in a binaural system. These are the principal cues for sound localization, to detect sound source. In this system, the obstacle is substituted with a sound source. The visually impaired receive sound information of obstacles by headphone.

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캡스톤 디자인을 통한 3D Depth 센서 기반 HRI 시스템의 위치추정 알고리즘 연구 (A Study of Localization Algorithm of HRI System based on 3D Depth Sensor through Capstone Design)

  • 이동명
    • 공학교육연구
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    • 제19권6호
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    • pp.49-56
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    • 2016
  • The Human Robot Interface (HRI) based on 3D depth sensor on the docent robot is developed and the localization algorithm based on extended Kalman Filter (EKFLA) are proposed through the capstone design by graduate students in this paper. In addition to this, the performance of the proposed EKFLA is also analyzed. The developed HRI system consists of the route generation and localization algorithm, the user behavior pattern awareness algorithm, the map data generation and building algorithm, the obstacle detection and avoidance algorithm on the robot control modules that control the entire behaviors of the robot. It is confirmed that the improvement ratio of the localization error in EKFLA on the scenarios 1-3 is increased compared with the localization algorithm based on Kalman Filter (KFLA) as 21.96%, 25.81% and 15.03%, respectively.

Heart Sound Localization in Respiratory Sounds Based on Singular Spectrum Analysis and Frequency Features

  • Molaie, Malihe;Moradi, Mohammad Hassan
    • ETRI Journal
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    • 제37권4호
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    • pp.824-832
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    • 2015
  • Heart sounds are the main obstacle in lung sound analysis. To tackle this obstacle, we propose a diagnosis algorithm that uses singular spectrum analysis (SSA) and frequency features of heart and lung sounds. In particular, we introduce a frequency coefficient that shows the frequency difference between heart and lung sounds. The proposed algorithm is applied to a synthetic mixture of heart and lung sounds. The results show that heart sounds can be extracted successfully and localizations for the first and second heart sounds are remarkably performed. An error analysis of the localization results shows that the proposed algorithm has fewer errors compared to the SSA method, which is one of the most powerful methods in the localization of heart sounds. The presented algorithm is also applied in the cases of recorded respiratory sounds from the chest walls of five healthy subjects. The efficiency of the algorithm in extracting heart sounds from the recorded breathing sounds is verified with power spectral density evaluations and listening. Most studies have used only normal respiratory sounds, whereas we additionally use abnormal breathing sounds to validate the strength of our achievements.

네트워크 기반 자율 이동 로봇을 위한 시간지연 보상을 통한 새로운 동적 장애물 회피 알고리즘 개발 (Development of a New Moving Obstacle Avoidance Algorithm using a Delay-Time Compensation for a Network-based Autonomous Mobile Robot)

  • 김동선;오세권;김대원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1916-1917
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    • 2011
  • A development of a new moving obstacle avoidance algorithm using a delay-time Compensation for a network-based autonomous mobile robot is proposed in this paper. The moving obstacle avoidance algorithm is based on a Kalman filter through moving obstacle estimation and a Bezier curve for path generation. And, the network-based mobile robot, that is a unified system composed of distributed environmental sensors, mobile actuators, and controller, is compensated by a network delay compensation algorithm for degradation performance by network delay. The network delay compensation method by a sensor fusion using the Kalman filter is proposed for the localization of the robot to compensate both the delay of readings of an odometry and the delay of reading of environmental sensors. Through some simulation tests, the performance enhancement of the proposed algorithm in the viewpoint of efficient path generation and accurate goal point is shown here.

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네트워크 기반 자율이동 로봇을 위한 시간지연 보상을 통한 장애물 회피 알고리즘의 성능 개선 (Performance Enhancement of an Obstacle Avoidance Algorithm using a Network Delay Compensationfor a Network-based Autonomous Mobile Robot)

  • 김주민;김진우;김대원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1898-1899
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    • 2011
  • In this paper, we propose an obstacle avoidance algorithm for a network-based autonomous mobile robot. The obstacle avoidance algorithm is based on the VFH (Vector Field Histogram) algorithm and delay-compensative methods with the VFH algorithm are proposed for the network-based robot that is a unified system composed of distributed environmental sensors, mobile actuators, and the VFH controller. Firstly, the compensated readings of the sensors are used for building the polar histogram of the VFH algorithm. Secondly, a sensory fusion using the Kalman filter is proposed for the localization of the robot to compensate both the delay of the readings of an odometry sensor and the delay of the readings of the environmental sensors. The performance enhancements of the proposed obstacle avoidance algorithm from the viewpoint of efficient path generation and accurate goal positioning are also shown in this paper through some simulation experiments by the Marilou Robotics Studio Simulator.

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스케일불변 특징의 삼차원 재구성을 통한 이동 로봇의 상대위치추정 (Relative Localization for Mobile Robot using 3D Reconstruction of Scale-Invariant Features)

  • 길세기;이종실;유제군;이응혁;홍승홍;신동범
    • 대한전기학회논문지:시스템및제어부문D
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    • 제55권4호
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    • pp.173-180
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    • 2006
  • A key component of autonomous navigation of intelligent home robot is localization and map building with recognized features from the environment. To validate this, accurate measurement of relative location between robot and features is essential. In this paper, we proposed relative localization algorithm based on 3D reconstruction of scale invariant features of two images which are captured from two parallel cameras. We captured two images from parallel cameras which are attached in front of robot and detect scale invariant features in each image using SIFT(scale invariant feature transform). Then, we performed matching for the two image's feature points and got the relative location using 3D reconstruction for the matched points. Stereo camera needs high precision of two camera's extrinsic and matching pixels in two camera image. Because we used two cameras which are different from stereo camera and scale invariant feature point and it's easy to setup the extrinsic parameter. Furthermore, 3D reconstruction does not need any other sensor. And the results can be simultaneously used by obstacle avoidance, map building and localization. We set 20cm the distance between two camera and capture the 3frames per second. The experimental results show :t6cm maximum error in the range of less than 2m and ${\pm}15cm$ maximum error in the range of between 2m and 4m.

지능형 무인자동차 제어시스템 개발 (Development of an Intelligent Unmanned Vehicle Control System)

  • 김윤구;이기동
    • 대한임베디드공학회논문지
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    • 제3권3호
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    • pp.126-135
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    • 2008
  • The development of an unmanned vehicle basically requires the robust and reliable performance of major functions which include global localization, lane detection, obstacle avoidance, path planning, etc. The implementation of major functional subsystems are possible by integrating and fusing data acquired from various sensory systems such as GPS, vision, ultrasonic sensor, encoder, and electric compass. This paper focuses on implementing the functional subsystems, which are designed and developed by a graphical programming tool, NI LabVIEW, and also verifying the autonomous navigation and remote control of the unmanned vehicle.

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네트워크 기반 자율이동로봇을 위한 장애물 회피 알고리즘 개발 (Development of an Obstacle Avoidance Algorithm for a Network-based Autonomous Mobile Robot)

  • 김홍열;김대원;김홍석;손수경
    • 대한전기학회논문지:시스템및제어부문D
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    • 제54권5호
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    • pp.291-299
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    • 2005
  • An obstacle avoidance algorithm for a network-based autonomous mobile robot is proposed in this paper. The obstacle avoidance algorithm is based on the VFH(Vector Field Histogram) algorithm and two delay compensation methods with the VFH algorithm are proposed for a network-based robot with distributed environmental sensors, mobile actuators, and the VFH controller. Firstly, the environmental sensor information is compensated by prospection with acquired environmental sensor information, measured network delays, and the kinematic model of the robot. The compensated environmental sensor information is used for building polar histogram with the VFH algorithm. Secondly, a sensor fusion algorithm for localization of the robot is proposed to compensate the delay of odometry sensor information and the delay of environmental sensor information. Through some simulation tests, the performance enhancement of the proposed algorithm in the viewpoint of efficient path generation and accurate goal positioning is shown here.