• 제목/요약/키워드: Robot simulation

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효율적인 구조로봇 개발을 위한 통합 M&S 프레임워크 (Modeling & Simulation Framework for the Efficient Development of a Rescue Robot)

  • 박규현
    • 한국시뮬레이션학회논문지
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    • 제28권2호
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    • pp.149-158
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    • 2019
  • 본 연구에서는 전장이나 재난 환경과 같은 인간이 투입되기 힘든 환경에서 인간을 대신하여 부상자 구조 및 위험물 처리 목적으로 개발된 구조로봇의 효율적 개발을 위한 통합 M&S 프레임워크를 소개한다. 개발된 통합 M&S 프레임워크는 계층화, 모듈화된 통합운동제어 소프트웨어의 구조에 기인하여 통합운동제어 소프트웨어 구조는 동일하게 이용하며 로봇 플랫폼을 시뮬레이션 프로그램으로 대체하여 SILS(Software-in-the-Loop Simulation) 개념의 M&S를 가능하게 하였다. 이를 활용하여 로봇 설계 및 로봇 제어 기술의 성능 검증 등의 개발 전 과정을 효율적으로 수행하였고, 비정형 환경에서의 원격 운용성 향상도 가져왔다. 통합 M&S 프레임워크의 적극적인 활용을 통해 구조로봇의 성공적인 개발 및 성능 확인을 완료하였으며, 구조로봇의 주요 기술 중 하나인 가변형상 제어를 통한 주행 안정화 기술 개발 과정에 적용된 통합 M&S 프레임워크의 사례를 통해 효용성을 확인한다.

모바일 경계로봇의 시뮬레이션 기반 설계 (Simulation based Design of a Mobile Surveillance Robot)

  • 황기상;박규진;김도현;김성수;박성호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.1179-1184
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    • 2007
  • An unmaned surveillance robot consists of rifle, laser receiver, thermal imager, color CCD camera, and laser illuminator. A human guard can be replaced with such a robot to take care dangerous surveillance tasks. Currently most of surveillance robots are mounded at a fixed post to take care of surveillance tasks. In order to watch blind areas, it is necessary to modify such a surveillance robot to become a mobile robot. In this paper, simulation based design procedure of mobile surveillance robot has been introduced. 3D CAD geometry model has been produced using Pro-Engineer. Required pen and tilt motor capacities have been analyzed using ADAMS inverse dynamics analysis. A target tracking and stabilization control algorithm of the mobile surveillance robot has been developed in order to stabilize the system from the motion of the vehicle which experiences the rough terrain. ADAMS-Matlab co-simulation has been also carried out to validate the proposed target tracking and stabilization algorithm.

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MR센서를 이용한 실외형 자율이동 로봇의 퍼지 조향제어기 개발 (Development of Fuzzy Streering Controller for Outdoor Autonomous Mobile Robot with MR sensor)

  • 김정희;손석준;임영철;김태곤;유영재;김의선
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 D
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    • pp.2365-2368
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    • 2001
  • This paper describes a fuzzy steering controller for an autonomous mobile robot with MR sensor. Using the magnetic field($B_{x}$, $B_{y}$, $B_{z}$) obtained from the MR sensor, we designed fuzzy controller for driving on the road center. Fuzzy rule base was built to magnetic field($B_{x}$, $B_{y}$, $B_{z}$). To develop an autonomous mobile robot simulation program, we have done modeling MR sensor, dynamic model of mobile robot and coordinate transformation. A computer simulation of the robot (including mobile robot dynamics and steering) was used to verify the steering performance of the mobile robot controller using the fuzzy logic. Good results were obtained by computer simulation. So, we confirmed the robustness of the proposed fuzzy controller by computer simulation. Also, we know that proposed control algorithm was applied to real autonomous mobile robot.

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컴퓨터를 이용한 로보트 설계 소프트웨어 팩키지 개발 (A computer-aided design software package for robot manipulators and their controllers)

  • 오세영;김호연;강영국
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1986년도 한국자동제어학술회의논문집; 한국과학기술대학, 충남; 17-18 Oct. 1986
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    • pp.337-340
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    • 1986
  • A software package CARDS for general purpose robot design, control, and simulation has been developed and is presented here. CARDS (Computer Aided Robot Design and Simulation) consists of a collection of standardized subroutine modules that carry out typical kineamatic, dynamic, and control computations so that the user only needs to write a main program that further defines a particular robot configuration and the task to be performed. It provides users a complete simulation environment, so that it will be a valuable engineering tool for mechanical designers as well as electric control designers.

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장님 이동 로봇의 힘 제어 : 분석, 시뮬레이션 및 실험 (Force Control of a Blind Mobile Robot: Analysis, Simulations and Experiments)

  • 전풍우;정슬
    • 제어로봇시스템학회논문지
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    • 제9권10호
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    • pp.798-807
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    • 2003
  • We propose a blind mobile robot force control algorithm that uses force information as a guidance toward to the goal position. Based on the mobile robot dynamics, the control law is formed from explicit force errors. Simulation studies are conducted based on the kinematics and the dynamics of the mobile robot. Simulation results show that good force tracking can be achieved. In order to confirm simulation results, experiments are performed. The robot is commanded to follow unknown environment with maintaining a certain desired force. Experimental results show that the blind mobile robot successfully maintains contact with a regulated desired force and arrives at the goal position.

Development of Fuzzy Steering Controller for Outdoor Autonomous Mobile Robot with MR sensor

  • Kim, Jeong-Heui;Son, Seok-Jun;Lim, Young-Cheol;Kim, Tae-Gon;Ryoo, Young-Jae;Kim, Eui-Sun
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.105.5-105
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    • 2001
  • This paper describes a fuzzy steering controller for an autonomous mobile robot with MR sensor. Using the magnetic field(Bx, By, Bz) obtained from the MR sensor, we designed fuzzy controller for driving on the road center. Fuzzy rule base was built to magnetic field(Bx, By, Bz). To develop an autonomous mobile robot simulation program, we have done modeling MR sensor, dynamic model of mobile robot and coordinate transformation. A computer simulation of the robot including mobile robot dynamics and steering was used to verify the steering performance of the mobile robot controller using the fuzzy logic Good results were obtained by computer simulation. So, we confirmed the robustness of the proposed fuzzy controller by computer ...

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다중로보트의 동작결정을 위한 시뮬레이터 구성 (Construction of simulator for cooperative multi-robot motions)

  • 김정찬;김진걸
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1992년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 19-21 Oct. 1992
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    • pp.332-336
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    • 1992
  • We describe about the graphic simulation system which supports the determination of efficient multi-robot motions during cooperation. For the construction of the simulation software for multi-robot motions, two problems are presented. First problem is that all the robot motions must be determinded using both the desired object motions and the holonomic constraints with the object. To find the robot motions combined with the various object motion path, the robot motions are derived from the desired object path instead of a master robot path. Therefore robot motions can be easily modifiable with the various object motions. This type of motion determination is different from that of the master-slaves method using the master robot motions. The other is that the developments of robot application softwares need a heavy cost when the participated robots or the tasks given to the robots are changed. Based on object-oriented programming paradigm, we present useful software objects describing robot application programming environment. The object-oriented programming paradigm increases the software reusability, reliability, and extensibility, and also provides the structual concepts to cope with the various demands of robot application programming.

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이동 로봇 위치 추정 및 시뮬레이션 프로그래밍 툴킷 (Programming Toolkit for Localization and Simulation of a Mobile Robot)

  • 정석기;김태균;고낙용
    • 한국지능시스템학회논문지
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    • 제23권4호
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    • pp.332-340
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    • 2013
  • 본 논문은 실제 환경과 모의실험에서 이동 로봇의 위치 추정과 자율주행 구현을 위한 프로그래밍 툴킷에 대해 서술한다. 기존에 사용되고 있는 라이브러리들은 복잡성과 유용성의 결함으로 사용에 어려움이 있다. 제안된 툴킷은 추측항법, 운동 모델, 측정 모델, 그리고 방향 또는 지향각의 연산을 위한 툴킷들로 구성된다. 추측 항법과 운동 모델은 차륜 구동 로봇과 전, 후륜 속도에 의한 이륜차 로봇에 대해 다룬다. 툴킷들은 실제 환경과 모의실험에서의 자율주행을 위해 사용 가능하다. 툴킷의 사용가능성은 모의실험의 결과와 실제 실험의 결과를 보임으로써 증명한다. 제안된 툴킷은 이동 로봇의 위치추정, 지도 작성, 그리고 장애물 회피와 같은 자율주행의 구성 기술을 위한 알고리즘의 검사에 사용할 수 있을 것으로 기대된다.

로보트 용접 공정 계획을 위한 Graphic Simulation Modeller의 개발 (Development of a Graphic Simulation Modeller for Robot Welding Process Planning)

  • 최병규;정재윤;김동원
    • 대한산업공학회지
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    • 제11권1호
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    • pp.21-32
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    • 1985
  • Presented in this paper is a procedure of developing graphical simulation software for planning robot welding processes. Welding is by far the highest application area for industrial robots, and it has been in great need of such a simulator in designing robot work cells, in justifying the economics of robot welding and in planning robotized welding operations. The model of a robot welding cell consists of four components: They are an welding structure which is a collection of plates to be welded, a positioner to hold the welding structure, a robot with a weld torch, and a set of welding lines (in case of arc welding). Welding structure is modeled by using the reference plane concept and is represented as boundary file which is widely used in solid modeling. Robot itself is modeled as a kinematic linkage system. Also included in the model are such technical constraints as weaving patterns and inclination allowances for each weld joint type. An interactive means is provided to input the welding structure and welding lines on a graphics terminal. Upon completion of input, the program displays the welding structure and welding lines and calculates the center of mass which is used in determining positioner configurations. For a given positioner and robot configuration, the welding line segments that can be covered by the robot are identified, enabling to calculate the robot weld ratio and cycle time. The program is written in FORTRAN for a VAX computer with a Tektronix 4114 graphic terminal.

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