• 제목/요약/키워드: G-Robot

검색결과 295건 처리시간 0.04초

적외선을 사용한 사용자 추종 이동로봇 (An Indoor User-Tracking Mobile Robot Based on Infrared Signal Detection)

  • 권순태;박상홍;주문갑
    • 대한임베디드공학회논문지
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    • 제7권1호
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    • pp.25-31
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    • 2012
  • We propose a method for an indoor mobile robot to track user with infrared transmitter. Several infrared receivers attached around by the mobile robot enable the robot to determine the moving direction by comparing the received signal patterns. The cost of the proposed system is not only cheaper than ultrasonic system, image signal processing, RFID, and RSSI method, but also robust against environment change because any complex algorithm is not necessary. In the mobile robot, ultrasonic sensors are equipped to avoid obstacles located in the moving direction, and a simple algorithm is embedded to avoid the case of poor signal reception.

초경량 양팔로봇의 개발 (Development of cooperating robot arms with ultra light weight)

  • 최형식;문웅주;김병국;임근화
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.67-68
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    • 2006
  • In this paper, a new revolute cooperating robot arms with 12 d.o.f was developed for autonomous moving robots. The robot ann was designed to have the load capacity of 10 Kg. For this, a new joint actuator based on the fourbar link mechanism was employed. As a control system for the robot arm, a distributed control system was developed composed of the main controller and five motor controller for the ann joints. The main controller and the motor controller were developed using the ARM microprocessor and the TMS320c2407 processor, respectively. To validate the performance of the robot system, an experiment to support 10 Kg payload was performed.

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머니퓰레이터를 장착한 무선통신 나선형 기둥등반로봇 (A Wireless-Communicated Spirally Column-Climbing Robot with a Manipulator)

  • 이석우;하성민;강철구
    • 로봇학회논문지
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    • 제10권4호
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    • pp.213-222
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    • 2015
  • This paper presents a column-climbing robot with a mechanical manipulator, which can spirally go up and down a column using wheels. The developed robot can do useful works using the manipulator at the top of a column, e.g., electric pole while communicating wirelessly with an operator panel. It is driven using a battery without any power cables, and the average duration of power is at least one hour. The robot has a function to detect a work object using an optical sensor installed at the bottom of the manipulator. The spirally column-climbing robot developed is demonstrated by experimental works and also by showing it at an exhibition.

FPGA-based ARX-Laguerre PIO fault diagnosis in robot manipulator

  • Piltan, Farzin;Kim, Jong-Myon
    • Advances in robotics research
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    • 제2권1호
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    • pp.99-112
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    • 2018
  • The main contribution of this work is the design of a field programmable gate array (FPGA) based ARX-Laguerre proportional-integral observation (PIO) system for fault detection and identification (FDI) in a multi-input, multi-output (MIMO) nonlinear uncertain dynamical robot manipulators. An ARX-Laguerre method was used in this study to dynamic modeling the robot manipulator in the presence of uncertainty and disturbance. To address the challenges of robustness, fault detection, isolation, and estimation the proposed FPGA-based PI observer was applied to the ARX-Laguerre robot model. The effectiveness and accuracy of FPGA based ARX-Laguerre PIO was tested by first three degrees of the freedom PUMA robot manipulator, yielding 6.3%, 10.73%, and 4.23%, average performance improvement for three types of faults (e.g., actuator fault, sensor faults, and composite fault), respectively.

웹캠과 스마트폰 기반의 반려 동물 돌봄 로봇의 구현 및 전원 관리 (Implementation of a Pet Care Robot Based on Webcam and Smartphone and its Power Management)

  • 이윤호;전주현;이나은;장제문;유신;주문갑
    • 대한임베디드공학회논문지
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    • 제16권1호
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    • pp.29-34
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    • 2021
  • We developed a pet care robot that can be controlled outdoors. Through the smartphone application, the pet owners can watch the situation in the house and manipulate the robot to make their pet happy. The video data in the house is transmitted to the application through the webcam installed at the house. The robot can not only perform user's command but also do six basic macro action. The obstacle avoidance function using the current sensor can be activated if the user want to use. When the robot hits to something, it moves back and rotates by arbitrary angle, and then moves forward.

다관절형 로봇을 위한 강인한 퍼지 논리 제어 (A Robust Fuzzy Logic Control for Robot Manipulators)

  • 이수영;정명진
    • 전자공학회논문지B
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    • 제33B권2호
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    • pp.1-9
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    • 1996
  • Although the fuzzy logic controller (FLC) has been adopted in many engineering applications, one hesitates to adopt the FLC in critical applications, since there was no definite control theoretic analysis. In this paper, based on the stability/robustness analysis of an FLC by S.Y.Yi$^{[3]}$, we apply the FLC to robot manipulator with the structured and unstructured uncertainties e.g., load variation and firction, etc. And we verify the performance of the FLC by computer simulation on a simple two-link robot manipulator.

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Sliding mode를 이용한 SCARA 로보트의 궤적 제어에 관한 연구 (A Study on the Trajectory Control of SCARA Robot Using Sliding Modes)

  • 홍동기;남경태;이해영;박정일;이석규
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 B
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    • pp.773-776
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    • 1995
  • Sliding Mode Controller is largely used to control holy nonlinear system such as robot manipulator. This paper simulate the SCARA robot with sliding mode control algorithm and its applied form with saturation term to reduce chattering. In addition, hardware system using DSP board which operates with high speed is constructed.

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선체 수직 외벽 Papering 용 로봇 모듈의 조합 최적설계의 개념적 접근 (Conceptional Approach for Assembly Reconfiguration of Papering Robot Modules)

  • 정원지;김성현;김기정;김효곤
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.2015-2018
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    • 2005
  • In this paper, we are willing to prepare the reasonable optimization, Combinatorial Optimization and Genetic Algorithm. Thus we define position status of end-effect (or terminative link module) using promised form, (G, M(G), A(G), and so on.). For this preparing step, the reorganizing procedure of Link and Joint Module is necessary, like as enumerating the kinematically identical assembly group of several links and joints. Thus, we draw a G, directed graph in a first step. Because, directed graph contains the path information between adjacent Link Module and Joint Module. From the directed graph,G, we can incite the Incidence Matrix, M(G). The incidence matrix, M(G), contains the contact information of the Link (Joint) Module and the type of Link (Joint). At the end of this paper, we generalize the modular information as a matrix form, A(G). From this matrix, we can make a population of assembly status. That is the finial output of this paper.

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