• 제목/요약/키워드: robot trajectory

검색결과 842건 처리시간 0.026초

속도와 가속도 제한에서 전향 보상기를 이용한 벨트 구동의 정밀제어 (Precision Control of Belt Drives using Feed Forward Compensator under Acceleration and Velocity Constraints)

  • 권세현
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권5호
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    • pp.713-720
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    • 2009
  • Numerous applications of position controlling devices using servoing technique and transmission of energy through belt drives are practiced in the industry. Belt drive is a simple, lightweight, low cost power transmission system. Belt drives provide freedom to position the motor relative to the load and this phenomenon enables reduction of the robot arm inertia. It also facilitates quick response when employed in robotics. In this paper, precision positioning of a belt driven mechanism using a feed-forward compensator under maximum acceleration and velocity constraints is proposed. The proposed method plans the desired trajectory and modifies it to compensate delay dynamics and vibration. Being an offline method, the proposed method could be easily and effectively adopted to the existing systems without any modification of the hardware setup. The effectiveness of the proposed method is demonstrated through computer simulation and experimental results.

로보트 매니퓰레이터의 카르테시안 직선운동을 위한 경로집의 최소화 (Determination of the Minimum Number of Intermediate Points for the Robot Manipulator Cartesian Stright Motion)

  • 오세현;전홍태
    • 대한전자공학회논문지
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    • 제25권2호
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    • pp.144-151
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    • 1988
  • Between any two points in the Cartesian space, the straight motion has many distinct advantages in path/trajectory plannings, specially in a crowded workspace. But to achieve this motion is a nontrivial task. One standard way to approximate this motion is to plae enough intermediate points along the desired path and linearly interpolate two adjacent intermediate points in the joint space. In this approach, however, the determination of the minimum number of intermediate points is very important from several aspects. A scheme that can effectively accomplish this purpose is established in this paper. This scheme is based on several search methods. The results are demonstrated using the PUMA 560 series manipulator.

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동적프로그래밍을 이용한 자율이동로봇의 동작계획 (Motion Planning of Autonomous Mobile Robot using Dynamic Programming)

  • 윤희상;박태형
    • 제어로봇시스템학회논문지
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    • 제16권1호
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    • pp.53-60
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    • 2010
  • We propose a motion planning method for autonomous mobile robots. In order to minimize traveling time, a smooth path and a time optimal velocity profile should be generated under kinematic and dynamic constraints. In this paper, we develop an effective and practical method to generate a good solution with lower computation time. The initial path is obtained from voronoi diagram by Dijkstra's algorithm. Then the path is improved by changing the graph and path simultaneously. We apply the dynamic programming algorithm into the stage of improvement. Simulation results are presented to verify the performance of the proposed method.

인간형 로봇의 동작궤적 학습 및 생성 (Learning and Generation of Motion Trajectory in a Humanoid Robot)

  • 진영규;사공준;최진영
    • 한국지능시스템학회:학술대회논문집
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    • 한국퍼지및지능시스템학회 2001년도 춘계학술대회 학술발표 논문집
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    • pp.131-135
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    • 2001
  • 본 논문에서는 작업 변수 또는 동작의 의도에 따라 다양한 형태의 궤적을 생성할 수 있는 동적 궤적 메모리(MTM)와 로봇 관절의 속도 및 가속도 제약조건을 만족하는 동작 시간을 계산하는 방법인 제약 조건을 고려한 표본화 간격 계산법(STICCON)이라는 두 가지 방법을 제시한다. 그리고 그 방법은 인간형 로봇의 동작 궤적 생성을 위한 구조적인 틀을 제안한다. 제안된 방법은 인간형 로봇의 궤적 생성 방법이 가져야 하는 두 가지 특성, 즉 복잡하고 다양한 동작의 궤적 표현 능력과 제약 조건에 따른 동적 궤적의 변형 과정을 모두 가지고 있다.

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이족보행로봇의 킥엑션을 이용한 보행 구현 (Gait Implementation using a Kick Action for IWR-III Biped Walking Robot)

  • 진광호;박천욱;최상호;김진걸
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 추계학술대회 논문집 학회본부 B
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    • pp.552-554
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    • 1998
  • This paper deals with the gait generation of IWR-III using a kick action to have a walking pattern like human. For this, trajectory planning with the consideration of kick action is done in each walking step, and the coordinate transformation is done for simplifying the kinematics. Balancing motion is analyzed by FDM during the walking, By combining 4-types of pre-defined steps, multi-step walking is done. Using numerical simulator, dynamic analysis, ZMP analysis and system stability is confirmed. Walking motion is visualized by 3D- graphic simulator. As a result, trunk ahead motion effect and impactless smooth walking is implemented by experiment. Finally walking with kick action is implemented the IWR-III system.

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비홀로노믹 시스템을 위한 견실 추종 제어 (Robust Tracking Control of Nonholonomic Systems)

  • 양정민
    • 대한전기학회논문지:시스템및제어부문D
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    • 제52권1호
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    • pp.31-37
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    • 2003
  • A robust tracking control for nonholonomic dynamic systems is proposed in this paper. Since nonholonomic dynamic systems have constraints imposed on motions that are not integrable, i.e., the constraints cannot be written as time derivatives of some functions of generalized coordinates, advanced techniques are needed for their control. It is shown that if the state of nonholonomic systems is mapped into a bounded space by a coordinate transformation, a robust controller for dynamic models of nonholonomic systems with input disturbances can be designed using sliding mode control. Stability and robustness of the proposed controller are proved in the Lyapunov sense. Numerical simulations on the trajectory tracking of a two-wheeled mobile robot are conducted to validate the effectiveness of the proposed controller.

Robust Control for Free-Joint Manipulators

  • Shin, Jin-Ho;Lee, Ju-Jang
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1998년도 제13차 학술회의논문집
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    • pp.519-524
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    • 1998
  • This paper presents a robust control scheme of free-joint manipulators to overcome actuator failures and uncertain-ties in Cartesian space where tasks are planned. The control scheme has the adaptation law for the upper bound on the norm of uncertainties through the Lyapunov function approach. To solve the dynamic singularity problem in the controller, the singular and nonsingular regions are investigated based on a computer simulation. Then a singularity-free Cartesian trajectory planning is achieved in order to guarantee the availability of the control scheme. To illustrate the validity of the proposed control scheme, simulation results for a three-link planar robot arm with a free joint are shown.

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전위장을 이용한 로봇 경로계획의 구조적 Local minimum을 극복하는 경로계획 방법 (A trajectory plannings avoiding structural local minimum problem in robot path planning using potential field)

  • 남헌성;이지홍;류준
    • 전자공학회논문지B
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    • 제33B권9호
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    • pp.13-23
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    • 1996
  • When artificial potential field approach is used to avoid obstacle, the problem can be occurred in case that manipulator selects the path which across over an obstacle among paths. In thiscase manipulator can't reach the desired goal form obstacle. This problem is a case of structual local minimum. so this paper proposes the method to solve structual local minimum in this case. The method is that the manipulator goes via temporary goal. This paper proposes that visual region concept to select the temporary goal. The temporary goal is selected on the border of the visual region. To prove its effectiveness, two simulation examples are done by two link manipulator in two dimension and by three link manipulator in three dimension.

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반복학습에 의한 MIMO Nonminimum Phase 자율주행 System의 Feedforward 입력신호 생성에 관한 연구 (Feedforward Input Signal Generation for MIMO Nonminimum Phase Autonomous System Using Iterative Learning Method)

  • 김경수
    • 한국군사과학기술학회지
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    • 제21권2호
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    • pp.204-210
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    • 2018
  • As the 4th industrial revolution and artificial intelligence technology develop, it is expected that there will be a revolutionary changes in the security robot. However, artificial intelligence system requires enormous hardwares for tremendous computing loads, and there are many challenges that need to be addressed more technologically. This paper introduces precise tracking control technique of autonomous system that need to move repetitive paths for security purpose. The input feedforward signal is generated by using the inverse based iterative learning control theory for the 2 input 2 output nonminimum-phase system which was difficult to overcome by the conventional feedback control system. The simulation results of the input signal generation and precision tracking of given path corresponding to the repetition rate of extreme, such as bandwidth of the system, shows the efficacy of suggested techniques and possibility to be used in military security purposes.

RBFN를 이용한 로봇 매니퓰레이터의 신경망 적응 제어 (Neuro-Adaptive Control of Robot Manipulator Using RBFN)

  • 김정대;이민중;최영규;김성신
    • 대한전기학회논문지:시스템및제어부문D
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    • 제50권1호
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    • pp.38-44
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    • 2001
  • This paper investigates the direct adaptive control of nonlinear systems using RBFN(radial basis function networks). The structure of the controller consists of a fixed PD controller and a RBFN controller in parallel. An adaptation law for the parameters of RBFN is developed based on the Lyapunov stability theory to guarantee the stability of the overall control system. The filtered tracking error between the system output and the desired output is shown to be UUB(uniformly ultimately bounded). To evaluate the performance of the controller, the proposed method is applied to the trajectory contro of the two-link manipulator.

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