• 제목/요약/키워드: 협조 로봇

검색결과 64건 처리시간 0.021초

무선 센서 네트워크 기반 군집 로봇의 협조 행동을 위한 위치 측정 (Localization for Cooperative Behavior of Swarm Robots Based on Wireless Sensor Network)

  • 탁명환;주영훈
    • 제어로봇시스템학회논문지
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    • 제18권8호
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    • pp.725-730
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    • 2012
  • In this paper, we propose the localization algorithm for the cooperative behavior of the swarm robots based on WSN (Wireless Sensor Network). The proposed method is as follows: First, we measure positions of the L-bot (Leader robot) and F-bots (Follower robots) by using the APIT (Approximate Point In Triangle) and the RSSI (Received Signal Strength Indication). Second, we measure relative positions of the F-bots against the pre-measured position of the L-bot by using trilateration. Then, to revise a position error caused by noise of the wireless signal, we use the particle filter. Finally, we show the effectiveness and feasibility of the proposed method though some simulations.

휴머노이드와 모바일 로봇의 협조작업을 위한 진화적 동작 생성 (Evolutionary Generation of the Motions for Cooperative Work between Humanoid and Mobile Robot)

  • 장재영;서기성
    • 제어로봇시스템학회논문지
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    • 제16권2호
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    • pp.107-113
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    • 2010
  • In this paper, a prototype of cooperative work model for multi-robots system is introduced and the evolutionary approach is applied to generate the motions for the cooperative works of multi-robots system using genetic algorithm. The cooperative tasks can be performed by a humanoid robot and a mobile robot to deliver objects from shelves. Generation of the humanoid motions such as pick up, rotation, and place operation for the cooperative works are evolved. Modeling and computer simulation for the cooperative robots system are executed in Webots environments. Experimental results show the feasible and reasonable solutions for humanoid cooperative tasks are obtained.

휴머노이드 로봇의 마라톤 경기 및 전략 (Marathon Game and Strategy of Humanoid Robot)

  • 이기남;유영재
    • 한국지능시스템학회논문지
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    • 제26권1호
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    • pp.64-69
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    • 2016
  • 본 논문에서는 휴머노이드 로봇의 마라톤 경기를 소개하고, 전략을 제시하고자 한다. 인간을 모방하는 휴머노이드 로봇이 인간에게 협조할 수 있는 능력을 가지기 위해서는 운용시간, 안전성 및 주변 환경인식 기술들이 요구된다. 이에 대한 적합한 연구 모델로 인간의 마라톤 경기를 꼽을 수 있다. 본 논문에서는 인간의 마라톤 경기를 이해하고 그와 유사한 휴머노이드 로봇의 마라톤 경기에 대해 연구한다. 휴머노이드 로봇 관련 대회 중 HuroCup의 마라톤 경기는 인간의 마라톤과 가장 유사한 경기이다. 충분한 운용시간을 갖도록 설계 및 개발한 휴머노이드 로봇으로 마라톤 경기를 수행하고자 한다. 컴퓨터 비전을 통해 마라톤 트랙을 인식하여 보행하기 위한 전략을 세우고 휴머노이드 로봇에 적용한다. 실험 결과를 분석하여 휴머노이드 로봇의 마라톤 경기가 가능하도록 적용한 실제 경기 사례를 소개하고자 한다.

무고정조립작업을 위한 협조 로봇 매니퓰레이터의 제어 (control of Two-Coopearationg Robot Manipulators for Fixtureless Assembly)

  • 최형식
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 춘계학술대회 논문집
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    • pp.427-431
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    • 1996
  • A modeling of the dynamics of two cooperating robot manipulators doing assembly job such as peg-in-hole while coordinating the payload along the desired path is proposed. The system is uncertain due to the unknown mass and moment of inertia of the manipulators and the payload. To control the system, a robust control algorithm is proposed. The control algorithm includes fuzzylogic. By the fuzzy logic, the magnitude of the input torque of the manipulators is controlled not to go over the hardware saturation with keeping path tracking errors bounded.

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무게중심 보로노이 테셀레이션을 이용한 군집로봇의 협조탐색 (The Cooperate Navigation for Swarm Robot Using Centroidal Voronoi Tessellation)

  • 방문섭;주영훈
    • 전기학회논문지
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    • 제61권1호
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    • pp.130-134
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    • 2012
  • In this paper, we propose a space partitioning technique for swarm robots by using the Centroidal Voronoi Tessellation. The proposed method consists of two parts such as space partition and collision avoidance. The space partition for searching a given space is carried out by a density function which is generated by some accidents. The collision avoidance is implemented by the potential field method. Finally, the numerical experiments show the effectiveness and feasibility of the proposed method.

이종 다수의 네트워크 기반 휴머노이드를 위한 협조제어 소프트웨어 프레임워크 (Framework of a Cooperative Control Software for Heterogeneous Multiple Network Based Humanoid)

  • 임헌영;강연식;이중재;김종원;유범재
    • 로봇학회논문지
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    • 제3권3호
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    • pp.226-236
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    • 2008
  • In this paper, control software architecture is designed to enable a heterogeneous multiple humanoid robot demonstration executing tasks cooperating with each other. In the heterogeneous humanoid robot team, one large humanoid robot and two small humanoid robots are included. For the efficient and reliable information sharing between many software components for humanoid control, sensing and planning, CORBA based software framework is applied. The humanoid tasks are given in terms of finite state diagram based human-robot interface, which is interpreted into the XML based languages defining the details of the humanoid mission. A state transition is triggered based on the event which is described in terms of conditions on the sensor measurements such as robot locations and the external vision system. In the demonstration of the heterogeneous humanoid team, the task of multiple humanoid cleaning the table is given to the humanoid robots and successfully executed based on the given state diagram.

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자동화된 VLSI 생산 시스템 운용을 위한 소프트웨어 구조 및 프로토콜 설계 (Specification of a software architecture and protocols for automated VLSI manufacturing system operation)

  • 박종헌;김종원;권욱현
    • 제어로봇시스템학회논문지
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    • 제3권1호
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    • pp.94-100
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    • 1997
  • 본 연구에서는 자동화된 VLSI 제조 시스템 환경에서의 로트 조정기 및 범용 셀 제어기의 구축에 필요한 새로운 소프트웨어 구조 및 프로토콜을 제시하였다. 반도체 제조 시스템의 운용 제어 활동은 로트 조정기와 범용 셀 제어기가 상호 협조적으로 통신하는 클라이언트/서버 구조로 모형화 되었으며, 로트 조정기는 하나 이상의 작업을 수행할 수 있는 범용 셀 제어기에 작업을 의뢰하는 클라이언트로서 작동된다. 반도체 제조 시스템의 운용 소프트웨어와 관련된 기존의 연구들이 개념적인 구조와 전략 만을 다루었던 것과는 달리, 본 연구에서는 생산 설비 뿐만 아니라 물류운반 장치의 제어를 위하여 상세한 수준에서의 설계가 제시되었다. 본 연구의 특징으로는 설비 구성, 로트 형태, 일정 계획 규칙 등의 변경에 대한 동적 재구성 가능성을 들 수 있다. 또한 제안된 설계는 상용화된 프로세스 통신 기능을 사용하여 구현이 용이하다.

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수동 속도장 제어법을 이용한 협조 이동로봇 시스템의 분산제어 (Decentralized Control of Cooperative Mobile Robot Systems Using Passive Velocity Field Control Method)

  • 서진호;이권순
    • 한국자동차공학회논문집
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    • 제12권4호
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    • pp.129-138
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    • 2004
  • In this paper, we propose a method to apply a decentralized control algorithm for passive velocity field control using virtual flywheel system to cooperative 3-wheeled mobile robots, and these subsystem are under nonholonomic constraints. The considered robotic systems convey a common rigid object in a horizontal plain. Moreover we will proof the passivity and robustness for cooperative mobile robotic systems with decentralized passive velocity field control. Finally, The effectiveness of proposed control algorithm is examined by numerical simulation for cooperation tasks with 3-wheeled mobile robot systems.

IMS를 위한 로봇 군 제어방법 : 이종 협조 로봇의 톱질 작업 (Control Methodology of Multiple Arms for IMS : Experimental Sawing Task by Nonidentical Cooperating Arms)

  • 여희주;서일홍;이병주;오상록
    • 대한전기학회논문지:전력기술부문A
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    • 제48권4호
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    • pp.452-460
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    • 1999
  • Sawing experiments using a two-arm system have been performed in this work. The two-arm system under consideration of two kinematically-nonidentical arms. A passive joint is inserted at the end-point of one robot in order to increase the mobility up to the motion degree required for sawing tasks. A hybrid control algorithm for control of the two-arm system is designed. We experimentally show that the performance of the velocity and force response are satisfactory, and that one additional passive joint not only prevents the system from unwanted yaw motion in the sawing task, but also allows an unwanted pitch motion to be notably reduced by an internal load control. To show the general applicability of the proposed algorithms, we perform experimentation under several different conditions for saw, such as three saw blades, two sawing speeds, and two vertical forces.

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인공 면역계 기반 자율분산로봇 시스템의 협조 전략과 군행동 (Cooperative Strategies and Swarm Behavior in Distributed Autonomous Robotic Systems Based on Artificial Immune System)

  • 심귀보;이동욱;선상준
    • 제어로봇시스템학회논문지
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    • 제6권12호
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    • pp.1079-1085
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    • 2000
  • In this paper, we propose a method of cooperative control (T-cell modeling) and selection of group behavior strategy (B-cell modeling) based on immune system in distributed autonomous robotic system (DARS). An immune system is the living bodys self-protection and self-maintenance system. these features can be applied to decision making of the optimal swarm behavior in a dynamically changing environment. For applying immune system to DARS, a robot is regarded as a B-cell, each environmental condition as an antigen, a behavior strategy as an antibody, and control parameter as a T-cell, respectively. When the environmental condition (antigen) changes, a robot selects an appropriate behavior strategy (antibody). And its behavior strategy is stimulated and suppressed by other robots using communication (immune network). Finally, much stimulated strategy is adopted as a swarm behavior strategy. This control scheme is based on clonal selection and immune network hypothesis, and it is used for decision making of the optimal swarm strategy. Adaptation ability of the robot is enhanced by adding T-cell model as a control parameter in dynamic environments.

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