• Title/Summary/Keyword: 직교좌표로봇

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Effect of 2nd Axis Linear Motion Guide on Mechanical Performance of Robot in 2-Axis Cartesian Coordinate Robot (2축 직교좌표 로봇에서 2축 직선 운동 가이드가 로봇의 기계적 성능에 미치는 영향)

  • Lee, Jong Shin
    • Journal of the Korean Society of Mechanical Technology
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    • v.13 no.1
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    • pp.95-103
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    • 2011
  • Robots in various types carry and assemble parts through repeatedly and accurately moving to stored locations by combining linear motions. And, linear systems are used in orthogonal axes of robots and driven via ball screws, such as 2-axis cartesian coordinate robot in this paper. This paper presents the effect of the linear motion guide that is used in $2^{nd}$ axis in 2-axis cartesian coordinate robot. Some simulation results show that the linear motion guide influence greatly in robot performance such as the nominal life of linear guide. When use LM guide that have capacity near in $2^{nd}$ axis, this paper show that the nominal life on LM block of $1^{st}$ axis increases 37.4% and that the specification of $2^{nd}$ axis LM guide influences greatly the nominal life of $1^{st}$ axis LM block.

전조 볼 나사 BCD 측정기 개발에 관한 연구

  • 이춘만;임상헌;김현철
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.184-184
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    • 2004
  • 볼 나사는 반도체ㆍLCDㆍPDP 등 전자제품 조립장비 제조업체와 CNC 공작기계, 정밀측정기계, 직교좌표로봇, 반송장치, 항공기용 유압구동장치 대체품, 전동공구, 파워 steering, 테이블 개폐장치 등에서 구동 장치 및 물품의 이송을 위해 대부분 사용되는 중요한 기계요소 중의 하나이다. 그것은 회전운동을 직선운동으로 전환해주는 기구부에 들어가는 가장 중요한 부품이며, 원통형의 봉에 나선형의 그루브를 가공한 장축의 나사와 단축의 너트 사이에 볼을 게재시켜 축의 회전 시 적은 구름마찰로 인해, 너트부가 직선 운동하는데 원활 하게 만들어진 기계요소이다.(중략)

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아아크 熔接 로봇

  • 황창규
    • Journal of the KSME
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    • v.23 no.2
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    • pp.92-101
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    • 1983
  • 아이크 용접용 로봇은 작업환경의 개선, 생산성의 향상, 품질의 보증 등과 용접공정에 있어서의 생인화, 생력화 등을 목적으로 해서 아아크 용접 로봇의 개발에 대한 관심이 고조되고 있는데, 특히 박판과 소물부품용의 범용로봇과 다량생산을 위한 전용로봇이 주류를 이루고 있다. 아아크 용접 로봇의 형태는 직교좌표계, 원통화표계,극좌표계 등과 관절형이 있으나 이것을 크게 나누어 직각좌표행과 관절형으로 분류가 되겠다. 그런데 우리는 아아크 용접작업이라는 관점에서 볼 때, 사람이 용접 토오치를 손에 잡고 용접하는 동작과 같은 모양으로 동작이 되는 관절형 로봇을 많이 사용하고 있다. 용접용 로봇은 숙련된 용접사의 역할을 해야 하기 때문에 로봇은 필요로 하는 요건은 물론, 용접사의 기량 즉 용접토오치를 손에 잡고 용접할 때처럼 토오치 각도와 토 오치의 위치, 운봉요령 등이 원하는대로 동작이 되어야 한다.

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2-Axis Cartesian Coordinate Robot Optimization for Air Hockey Game (에어 하키 게임을 위한 2축 직교 좌표 로봇 최적화)

  • Kim, Hui-yeon;Lee, Won-jae;Yu, Yun Seop;Kim, Nam-ho
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2019.05a
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    • pp.436-438
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    • 2019
  • Air hockey robots are machine vision systems that allow users to play hockey balls through the camera. The position detection of the hockey ball is realized by using the color information of the ball using OpenCV library. It senses the position of the hockey ball, predicts its trajectory, and sends the result to the ARM Cortex-M board. The ARM Cortex-M board controls a 2- Axis Cartesian Coordinate Robot to run an air hockey game. Depending on the strategy of the air hockey robot, it can operate in defensive, offensive, defensive and offensive mode. In this paper, we describe a vision system development and trajectory prediction system and propose a new method to control a biaxial orthogonal robot in an air hockey game.

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Development of Collision Detection Method Using Estimation of Cartesian Space Acceleration Disturbance (직교좌표계 가속도 외란 추정을 통한 충돌 감지 알고리즘 개발)

  • Jung, Byung-jin;Moon, Hyungpil
    • The Journal of Korea Robotics Society
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    • v.12 no.3
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    • pp.258-262
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    • 2017
  • In this paper, we propose a new collision detection algorithm for human-robot collaboration. We use an IMU sensor located at the tip of the manipulator and the kinematic behavior of the manipulator to detect the unexpected collision between the robotic manipulator and environment. Unlike other method, the developed algorithm uses only the kinematic relationship between the manipulator joint and the end effector. Therefore, the collision estimation signal is not affected by the error of the dynamics model. The proposed collision detection algorithm detects the collision by comparing the estimated acceleration of the end effector derived from the position, velocity and acceleration trajectories of the robot joints with the actual acceleration measured by the sensor. In simulation, we compare the performance of our method with the conventional Residual Observer (ROB). Our method is less sensitive to the load variation because of the independency on the dynamic modeling of the manipulator.

Development of microarrayer for manufacturing DNA chip used in genome project (I) - A summary of research trend in-and-out of state - (유전자 검색을 위한 DNA chip 제작용 로봇 시스템의 개발(I) - 국내외 연구동향 -)

  • 이현동;김기대;임용표;김찬수
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2002.02a
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    • pp.407-412
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    • 2002
  • 세계는 지금 post-genome 시대에 접어들고 있고, 하루에도 수백개 이상 밝혀지는 새로운 유전정보들이나 모든 유전암호가 밝혀진 생물들을 기존의 방법들로 연구한다는 것은 너무나 많은 시간을 요구한다. 즉, 인간 게놈 프로젝트 뿐만 아니라, 식물 게놈 프로젝트 등 다양한 분야에서 DNA chip의 필요성이 인식되고 있다. 그러나 우리나라는 DNA chip의 생산에 있어서 chip 제작에 필수적인 DNA chip 제작용 microarrayer를 고가를 들여 수입에 의존하고 있는 실정이다. 이는 DNA chip 생산비를 높이고, 더 나아가 우리나라 생명공학분야 연구의 발전에 악영향을 미치는 결과를 초래할 수 있다. 몇몇 국내 생산 업체가 있지만, 아직 그 실요성을 입증하지 못하였고, 대부분의 chip 공급업체는 아직 수입품을 사용하고 있는 상태이다. 이에 본 연구에서는 microarrayer의 국산화를 통해 안정적 DNA chip 및 microarrayer의 공급을 위해 microarrayer의 개발에 관해 수행하는 연구이며, 앞으로의 연구방향을 다음과 같이 설정하였다. 1) 유전자 검색을 위한 DNA chip 제작용 로봇 시스템 (microarrayer)을 pin 타입으로 설정한다. 2) 정밀도 향상을 위하여 로봇 시스템의 구동은 XYZ 직교좌표형으로 설정한다. 3) 1$cm^2$당 5,000개 정도의 DNA를 붙일 수 있도록 한다.

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Two Evolutionary Gait Generation Methods for Quadruped Robots in Cartesian Coordinates Space and Join Coordinates Space (직교좌표공간과 관절공간에서의 4족 보행로봇의 두 가지 진화적 걸음새 생성기법)

  • Seo, Kisung
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.63 no.3
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    • pp.389-394
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    • 2014
  • Two evolutionary gait generation methods for Cartesian and Joint coordinates space are compared to develop a fast locomotion for quadruped robots. GA(Genetic Algorithm) based approaches seek to optimize a pre-selected set of parameters for the locus of paw and initial position in cartesian coordinates space. GP(Genetic Programming) based technique generate few joint trajectories using symbolic regression in joint coordinates space as a form of polynomials. Optimization for two proposed methods are executed using Webots simulation for the quadruped robot which is built by Bioloid. Furthermore, simulation results for two proposed methods are analysed in terms of different coordinate spaces.

Trajectory Planning of Industrial Robot using Spline Method in Task Space (직교좌표공간에서의 스플라인을 이용한 산업용 로봇의 궤적 생성 방법)

  • Chung, Seong Youb;Hwang, Myun Joong
    • Journal of Institute of Convergence Technology
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    • v.6 no.2
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    • pp.9-13
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    • 2016
  • Robot usually requires spline motion to move through multiple knots. In this paper, catmull-rom spline method is applied to the trajectory planning of industrial robot in task space. Centripetal catmull-rom is selected to avoid self-intersection and slow motion which can be occurred in uniform and chordal spline. The method to set two control points are proposed to satisfy velocity conditions of initial and final knots. To optimize robot motion, time scaling method is presented to minimize margin between real robot value and maximum value in velocity and acceleration. The simulation results show that the proposed methods are applied to trajectory planning and robot can follow the planned trajectory while robot motion does not exceed maximum value of velocity and acceleration.

Failure Detection Method of Industrial Cartesian Coordinate Robots Based on a CNN Inference Window Using Ambient Sound (음향 데이터를 이용한 CNN 추론 윈도우 기반 산업용 직교 좌표 로봇의 고장 진단 기법)

  • Hyuntae Cho
    • IEMEK Journal of Embedded Systems and Applications
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    • v.19 no.1
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    • pp.57-64
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    • 2024
  • In the industrial field, robots are used to increase productivity by replacing labors with dangerous, difficult, and hard tasks. However, failures of individual industrial robots in the entire production process may cause product defects or malfunctions, and may cause dangerous disasters in the case of manufacturing parts used in automobiles and aircrafts. Although requirements for early diagnosis of industrial robot failures are steadily increasing, there are many limitations in early detection. This paper introduces methods for diagnosing robot failures using sound-based data and deep learning. This paper also analyzes, compares, and evaluates the performance of failure diagnosis using various deep learning technologies. Furthermore, in order to improve the performance of the fault diagnosis system using deep learning technology, we propose a method to increase the accuracy of fault diagnosis based on an inference window. When adopting the inference window of deep learning, the accuracy of the failure diagnosis was increased up to 94%.

Object Position Estimation and Optimal Moving Planning of Mobile Manipulator based on Active Camera (능동카메라기반 이동매니퓰레이터의 물체위치추정 및 최적동작계획)

  • Jin, Tae-Seok;Lee, Jang-Myung
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.42 no.5 s.305
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    • pp.1-12
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    • 2005
  • A Mobile manipulator - a serial connection of a mobile robot and a task robot - is a very useful system to achieve various tasks in dangerous environment. because it has the higher performance than a fixed base manipulator in regard to the size of it's operational workspace. Unfortunately the use of a mobile robot introduces non-holonomic constraints, and the combination of a mobile robot and a manipulator generally introduces kinematic redundancy. In this paper, first a method for estimating the position of object at the cartesian coordinate system acquired by using the geometrical relationship between the image captured by 2-DOF active camera mounted on mobile robot and real object is proposed. Second, we propose a method to determine a optimal path between current the position of mobile manipulator whose mobile robot is non-holonomic and the position of object estimated by image information through the global displacement of the system in a symbolic way, using homogenous matrices. Then, we compute the corresponding joint parameters to make the desired displacement coincide with the computed symbolic displacement and object is captured through the control of a manipulator. The effectiveness of proposed method is demonstrated by the simulation and real experiment using the mobile manipulator.