• 제목/요약/키워드: Robot Velocity Control

검색결과 429건 처리시간 0.022초

바퀴형 이동 로봇의 모터제어를 통한 자세 및 속도 제어 연구 (Motor control of wheeled mobile robot Attitude and velocity control study)

  • 김현섭;박재민;신동호;김상훈
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2019년도 춘계학술발표대회
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    • pp.339-341
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    • 2019
  • 본 논문에서는 바퀴형 이동 로봇의 모터제어에 대하여 연구하였다. 로봇의 안정적인 주행을 위하여 PID 제어에 대한 이론을 연구하고 Imu sensor와 Hall sensor를 이용한 자세 및 속도 제어방법을 제시한다.

수직다관절 매니퓰레이터에 대한 비선형 되먹임제어의 응용 (Application of Nonlinear Feedback Control to an Articulated Manipulator)

  • Y.S. Baek;C.I. Yang;H.S. Aum
    • 한국정밀공학회지
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    • 제12권9호
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    • pp.104-114
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    • 1995
  • Mathematical models of industrial robots or manipulators are composed of highly nonlinear equations with nonlinear couplings between the variables of motions. These nonlin- earities were not considered important in the first stage that the working speed of the manipulator was not so fast, but the effect of nonlinear forces has become serious, as the working speed has been increased. So more improvement of performance cannot be expected by the control of manipulator using approximate linearization. As an approach for solving these problems, there is a method that eliminates nonlinear theory, which makes possible cecoupling of coupling terms and arbitrary arranging of poles is briefly introduced in this study. When the theory is applied to design the control law, its feasibility is examined whether the reasonable control results are obtained by simulating position, velocity, torque and tracing trajectory. The relations between the coefficients of the linearized differential equations and the maximum error and torque for the prescribed trajectory are also examined. Finally, the method for selecting the values for getting the most rapid and precise response within maximum torque of each drive is suggested in the choice of coefficients of characteristic equations which are obtained as a result of the control.

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전동기 시스템의 미지외란 및 전류 관측기 설계 (Design of Unknown Disturbance and Current Observer for Electric Motor Systems)

  • 이명석;정경모;공경철
    • 제어로봇시스템학회논문지
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    • 제21권7호
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    • pp.615-620
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    • 2015
  • DOB (Disturbance Observer) is an useful control method for estimating the disturbance applied to dynamic systems. Disturbance observer can be used to implement a robust control system to generate a control input for rejecting the disturbance, and it can be also used to estimate the disturbance to obtain information. The system that uses disturbance estimation is investigated for high performance control such as automatic door systems, walking robot and electric power steering system in vehicles. In this paper, a novel disturbance observer which is called disturbance and current observer for estimating load torque in the motor system is proposed. The difference between the DOB for disturbance rejection and DCOB is mathematically verified. Current and angular velocity are required for estimating the load torque of the motor in DOB. However, the DCOB can estimate load torque and current without current sensor. DCOB is designed based on modeling of the motor system. Appropriate Q-filter is selected and the applicability of DCOB is verified by simulation. The estimated disturbance and current of the electric motor can be verified without current sensor, as experiments of the actual motor system.

GPS와 비전시스템을 이용한 무인 골프카의 자율주행 (Autonomous Traveling of Unmanned Golf-Car using GPS and Vision system)

  • 정병묵;여인주;조지승
    • 한국정밀공학회지
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    • 제26권6호
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    • pp.74-80
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    • 2009
  • Path tracking of unmanned vehicle is a basis of autonomous driving and navigation. For the path tracking, it is very important to find the exact position of a vehicle. GPS is used to get the position of vehicle and a direction sensor and a velocity sensor is used to compensate the position error of GPS. To detect path lines in a road image, the bird's eye view transform is employed, which makes it easy to design a lateral control algorithm simply than from the perspective view of image. Because the driving speed of vehicle should be decreased at a curved lane and crossroads, so we suggest the speed control algorithm used GPS and image data. The control algorithm is simulated and experimented from the basis of expert driver's knowledge data. In the experiments, the results show that bird's eye view transform are good for the steering control and a speed control algorithm also shows a stability in real driving.

지능형 웨어러블 컴퓨팅의 응용 (Application of Intelligent Wearable Computing)

  • 김성주;정성호;전홍태
    • 한국지능시스템학회논문지
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    • 제14권3호
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    • pp.304-309
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    • 2004
  • 본 논문에서는 편리한 방식으로 착용할 수 있으며 지능을 지니고 있는 시스템을 구현하고자 한다. 인간을 보조하는 역할을 수행함과 동시에 착용할 수 있는 장점을 지닌 시스템의 구현은 다양한 제어기에 적용될 수 있다. 이동 중인 로봇의 상태를 파악하고 인간을 대신하여 명령을 전달해주는 시스템의 구현이 가능해진 것이다. 본 논문에서는 이동 로봇의 주행 정보를 받아들여 충돌 회피 주행에 필요한 속도와 회전각을 판단하여 명령을 전달하는 시스템을 착용 형태의 장치를 이용하여 구현하였다. 웨어러블 장치의 지능을 구현하기 위해 계층적 퍼지 논리와 신경망의 학습 능력을 결합하였다.

유전자 알고리즘을 이용한 이족보행 로봇의 계단 보행 (Trajectory Optimization for Biped Robots Walking Up-and-Down Stairs based on Genetic Algorithms)

  • 전권수;권오흥;박종현
    • 한국정밀공학회지
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    • 제23권4호
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    • pp.75-82
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    • 2006
  • In this paper, we propose an optimal trajectory for biped robots to move up-and-down stairs using a genetic algorithm and a computed-torque control for biped robots to be dynamically stable. First, a Real-Coded Genetic Algorithm (RCGA) which of operators are composed of reproduction, crossover and mutation is used to minimize the total energy. Constraints are divided into equalities and inequalities: Equality constraints consist of a position condition at the start and end of a step period and repeatability conditions related to each joint angle and angular velocity. Inequality constraints include collision avoidance conditions of a swing leg at the face and edge of a stair, knee joint conditions with respect to the avoidance of the kinematic singularity, and the zero moment point condition with respect to the stability into the going direction. In order to approximate a gait, each joint angle trajectory is defined as a 4-th order polynomial of which coefficients are chromosomes. The effectiveness of the proposed optimal trajectory is shown in computer simulations with a 6-dof biped robot that consists of seven links in the sagittal plane. The trajectory is more efficient than that generated by the modified GCIPM. And various trajectories generated by the proposed GA method are analyzed in a viewpoint of the consumption energy: walking on even ground, ascending stairs, and descending stairs.

A Path Generation Algorithm of Autonomous Robot Vehicle By the Sensor Platform and Optimal Controller Based On the Kinematic Model

  • Park, Tong-Jin;Han, Chang-Soo
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.399-399
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    • 2000
  • In this paper, path generation using the sensor platform is proposed. The sensor platform is composed two electric motors which make panning and tilting motions. An algorithm fur a real path form and an obstacle length is realized using a scanning algorithm to rotating the sensors on the sensor platform. An ARV (Autonomous Robot Vehicle) is able to recognize the given path by adapting this algorithm. In order for the ARV to navigate the path flexibly, a kinematic model needed to be constructed. The kinematic model of the ARV was reformed around its body center through a relative velocity relationship to controllability, which derives from the nonholonomic characteristics. The optimal controller that is based on tile kinematic model is operated purposefully to track a reference vehicle's path. The path generation algorithm is composed of two parks. On e part is the generating path pattern, and the other is used to avoid an obstacle. The optimal controller is used for tracking the reference path which is generated by recognizing the path pattern. Results of simulation show that this algorithm for an ARV is sufficient for path generation by small number of sensors and for low cost controller.

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확장충돌맵의 수학적 분석을 이용한 다개체의 충돌탐지 (Conflict Detection for Multi-agent Motion Planning using Mathematical Analysis of Extended Collision Map)

  • 윤영환;최정식;이범희
    • 로봇학회논문지
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    • 제2권3호
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    • pp.234-241
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    • 2007
  • Effective tools which can alleviate the complexity and computational load problem in collision-free motion planning for multi-agent system have steadily been demanded in robotics field. To reduce the complexity, the extended collision map (ECM) which adopts decoupled approach and prioritization is already proposed. In ECM, the collision regions which represent the potential collision of robots are calculated using the computational power; the complexity problem is not resolved completely. In this paper, we propose a mathematical analysis of the extended collision map; as a result, we formulate the collision region as an equation with 5-8 variables. For mathematical analysis, we introduce realistic assumptions as follows; the path of each robot can be approximated to a straight line or an arc and every robot moves with uniform velocity or constant acceleration near the intersection between paths. Our result reduces the computational complexity in comparison with the previous result without losing optimality, because we use simple but exact equations of the collision regions. This result can be widely applicable to coordinated multi-agent motion planning.

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대기압 플라즈마 용사 공정에서의 기판 코팅 온도 영향 연구 (Measurement of the Coating Temperature Evolution during Atmospheric Plasma Spraying)

  • 이기영;오현철
    • 공업화학
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    • 제31권6호
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    • pp.624-629
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    • 2020
  • 대기 플라즈마 용사(APS)법을 이용한 지르코니아 열차폐 코팅의 보다 효과적인 온도 제어를 위해서는 기판 온도에 영향을 미치는 매개 변수에 대한 이해가 필수적이며 실험 데이터를 기반으로 한 더 많은 결과가 필요하다. 본 연구는 APS (atmospheric plasma sprayed) 공정에서 기판 온도 제어에 관한 연구를 목적으로 한다. 특히, APS 기판 코팅과정에서 기판 표면 온도 제어를 위한 공랭 시스템, 플라즈마 가스 흐름, 분말 공급 속도, 로봇 속도 및 기판소재 영향 등을 보고하고 있다. 이러한 체계적인 접근은 APS 방식의 표면 코딩에서 온도를 제어하는데 도움이 되며, 이는 코팅 품질의 향상으로 이어질 것이다.

회전관성형 주행 메커니즘을 가진 내시경 로봇의 연구 (Research of Colonoscope Robot With Rotary Inertia Type Locomotion Mechanism)

  • 이재우
    • 한국산학기술학회논문지
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    • 제17권6호
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    • pp.521-526
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    • 2016
  • 본 논문에서는 환자의 대장 내에서 자율적으로 이동이 가능한 자율주행 형 대장 내시경의 주행 메커니즘으로서 회전관성을 이용하여 환자의 장내 주행이 가능한 새로운 주행메커니즘의 설계 방법에 대해 제안한다. 상업용 대장 내시경은 시술할 때 환자에게 장시간의 고통과 불쾌감을 제공하여 환자들이 시술을 꺼리게 되어 내시경 검사가 필요한 대장 암 등의 조기 진단에 차질을 빚고 있다. 이 문제를 해결하기 위하여 환자의 장관 내에서 자율적으로 이동함으로써 불쾌감이나 고통을 줄일 수 있는 로봇 형 차세대 내시경에 대한 연구가 진행되어 왔다. 회전관성을 이용하는 주행 메커니즘에서는 회전관성을 일으키기 위하여 flywheel을 모터로 구동하여 에너지를 저장한다. flywheel에 의한 에너지 저장과 방출에 의하여 장내에서 로봇이 주행할 때 일어나는 stick-slip 현상을 효율적으로 극복할 수 있다. 이를 위해 flywheel의 속도제어가 가능하고 고주파 노이즈에 강건한 제어기를 설계하고 구현하였다. 여기서 제시하는 회전관성을 이용한 주행 메커니즘은 다른 메커니즘에 비해 구조가 간단할 뿐 아니라 주행도 효율적임을 실험을 통하여 증명하였다.