• 제목/요약/키워드: Inverse planning

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속도분리를 이용한 여유자유도 로봇의 최적 경로계획 (An Optimal Trajectory Planning for Redundant Robot Manipulators Based on Velocity Decomposition)

  • 이지홍;원경태
    • 제어로봇시스템학회논문지
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    • 제5권7호
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    • pp.836-840
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    • 1999
  • Linear motion and angular motion in task space are handled separately in joint velocity planning for redundant robot manipulators. In solving inverse kinematic equations with given joint velocity limits, we consider the order of priority for linear motion and angular motion. The proposed method will be useful in such applications where only linear motions are important than angular motions or vice versa.

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계층 구조의 신경회로망에 의한 로보트 PTP 궤적 계획 (Robot PTP Trajectory Planning Using a Hierarchical Neural Network Structure)

  • 경계현;고명삼;이범희
    • 대한전기학회논문지
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    • 제39권10호
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    • pp.1121-1232
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    • 1990
  • A hierarchical neural network structure is described for robot PTP trajectory planning. In the first level, the multi-layered Perceptron neural network is used for the inverse kinematics with the back-propagation learning procedure. In the second level, a saccade generation model based joint trajectory planning model in proposed and analyzed with several features. Various simulations are performed to investigate the characteristics of the proposed neural networks.

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신경회로망에 의한 로보트의 역 기구학 구현

  • 이경식;남광희
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1989년도 한국자동제어학술회의논문집; Seoul, Korea; 27-28 Oct. 1989
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    • pp.144-148
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    • 1989
  • We solve the inverse kinematics problems in robotics by employing a neural network. In the practical situation. it is not easy to obtain the exact inverse kinematics solution, since there are many unforeseen errors such as the shift of a robot base the link's bending, et c. Hence difficulties follow in the trajectory planning. With the neural network, it is possible to train the robot motion so that the robot follows the desired trajectory without errors even under the situation where the unexpected errors are involved. In this work, Back-Propagation rule is used as a learning method.

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여유 자유도를 갖는 Robot Manipulator 최적 충돌 회피 경로 계획에 관한 연구 (Optimal Collision-Free Path Planning of Redundant Robotic Manipulators)

  • 장민근;기창두;기석호
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 추계학술대회 논문집
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    • pp.743-747
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    • 1996
  • A Potential Field Method is applied to the proposed algorithm for the planning of collision-free paths of redundant manipulators. The planning is carried out on the base of kinematic configuration. To make repulsive potentials, sources are distributed on the boundaries of obstacles. To escape from local minimum of the main potential and to attack other difficulties of the planning, various potentials are defined simultaneously, Inverse Kinematics Problems of the redundant manipulators are solved by unconstrained optimization method. Computer simulation result of the path planning is presented.

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여유구동을 활용한 생체모방 궤적계획 (Biomimetic Trajectory Planning Via Redundant Actuation)

  • 이재훈;이병주
    • 제어로봇시스템학회논문지
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    • 제9권6호
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    • pp.456-465
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    • 2003
  • It is well-known that bio-systems does not calculate inverse dynamics for trajectory planning, but they move by proper modulation of system impedances. Inspired by bio-systems, a biomimetic trajectory planning method is proposed in this work. This scheme is based on employment of redundant actuation which prevails in bio-systems. We discuss that for the generation of the biomimetic trajectory, intelligent structure of bio-systems plays an important role. Redundant actuation and kinematic redundancy fall into such a category of intelligent structure. The proposed biomimetic trajectory planning modulates the complete dynamic behavior such as natural frequencies and damping ratios by using the intelligent structure. Experimental work is illustrated to show the effectiveness of the proposed biomimetic trajectory planning for a five-bar mechanism with redundant actuators.

Fuzzy Hint Acquisition for the Collision Avoidance Solution of Redundant Manipulators Using Neural Network

  • Assal Samy F. M.;Watanabe Keigo;Izumi Kiyotaka
    • International Journal of Control, Automation, and Systems
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    • 제4권1호
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    • pp.17-29
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    • 2006
  • A novel inverse kinematics solution based on the back propagation neural network (NN) for redundant manipulators is developed for online obstacles avoidance. A laser transducer at the end-effctor is used for online planning the trajectory. Since the inverse kinematics in the present problem has infinite number of joint angle vectors, a fuzzy reasoning system is designed to generate an approximate value for that vector. This vector is fed into the NN as a hint input vector rather than as a training vector to guide the output of the NN. Simulations are implemented on both three- and four-link redundant planar manipulators to show the effectiveness of the proposed position control system.

Inverse Offset Method for Adaptive Cutter Path Generation from Point-based Surface

  • Kayal, Prasenjit
    • International Journal of CAD/CAM
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    • 제7권1호
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    • pp.21-30
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    • 2007
  • The inverse offset method (IOM) is widely used for generating cutter paths from the point-based surface where the surface is characterised by a set of surface points rather than parametric polynomial surface equations. In the IOM, cutter path planning is carried out by specifying the grid sizes, called the step-forward and step-interval distances respectively in the forward and transverse cutting directions. The step-forward distance causes the chordal deviation and the step-forward distance produces the cusp. The chordal deviation and cusp are also functions of local surface slopes and curvatures. As the slopes and curvatures vary over the surface, different step-forward and step-interval distances are appropriate in different areas for obtaining the machined surface accurately and efficiently. In this paper, the chordal deviation and cusp height are calculated in consideration with the surface slopes and curvatures, and their combined effect is used to estimate the machined surface error. An adaptive grid generation algorithm is proposed, which enables the IOM to generate cutter paths adaptively using different step-forward and step-interval distances in different regions rather than constant step-forward and step-interval distances for entire surface.

정기구학 및 역기구학을이용한하지 교정절골술 계획 생성 (Surgical Planning in Deformity Correction Osteotomies using Forward Kinematics and Inverse Kinematics)

  • 정지원;이승열;윤기범;박문석;이제희
    • 한국컴퓨터그래픽스학회논문지
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    • 제20권1호
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    • pp.1-11
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    • 2014
  • 뇌성마비에서 나타나는 하지 변형은 정상 보행 및 자세 유지에 어려움을 준다. 이를 교정하기 위해 임상의는 변형 정도를 측정하여 교정 절골술 계획을 수립하고 계획된 정도만큼 절골술을 시행한다. 그러나 절골술 시행 후 원래 계획보다 더 적거나 더 많이 교정되는 상황이나 의도치 않았던 변형이 발견되는 상황이 종종 발생한다. 이러한 문제 상황들이 발생하는 이유는 절골술 계획수립 시, 기존의 방법이 하지골의 정확한 형태학적 정보를 반영하기 어렵고 하지골을 절골하여 회전 시키는 정도에 따라 최종 결과가 어떻게 나오는지 사전에 예측하는 것이 쉽지 않으며 효과적인 교정 결과를 얻을 수 있는 절골술 방법, 회전각도 등 다양한 입력 조건의 최적 조합을 찾기가 어렵기 때문이다. 본 논문은 이를 해결하기 위해 컴퓨터 그래픽스 분야의 정기구학, 역기구학 및 최적화 기법을 하지 교정 절골술에 적용하여 임상의가 최적의 절골술 계획을 수립할 수 있도록 하는 방법을 제안한다. 하지 골의 3차원 메쉬 모델을 입력으로 받아 이를 분석하여 하지 특징점을 추출하고 임상지표를 자동으로 계산하여 변형 정도를 파악하는 방법, 하지 골을 대상으로 하는 5가지 교정 절골술의 시뮬레이션을 통해 그 결과를 사전에 예측할 수 있는 방법 그리고 비선형 최적화 문제로 변환하여 최적 교정 절골술 계획을 자동으로 수립하는 방법을 제안한다. 이를 통해 하지 골 교정 절골술과 관련된 거의 모든 경우의 수를 사전에 확인해 볼 수 있어서 종래의 방법보다 훨씬 쉽고 효율적으로 절골술을 계획하고 실행할 수 있을 것이다.

원료불출기의 역기구학: 여유자유도와 구속조건을 이용한 닫힌 형태의 해 (Inverse kinematics of a Reclaimer: Redundancy and a Closed- Form Solution by Exploiting Geometric Constraints)

  • Hong, K.S.;Kim, Y.M.;Shin, K.T.
    • 한국정밀공학회지
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    • 제14권7호
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    • pp.144-153
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    • 1997
  • The inverse kinematics problem of a reclaimer which excavates and transports raw materials in a raw yard is investigated. Because of the geometric feature of the equipment in which scooping buckets are attached around the rotating disk, kinematic redundancy occurs in determining joint variable. Link coordinates are introduced following the Denavit-Hartenbery representation. For a given excavation point the forward kinematics yields 3 equations, however the number of involved joint variables in the equations is four. It is shown that the rotating disk at the end of the boom provides an extra passive degree of freedom. Two approaches are investigated in obtaining inverse kinematics solutions. The first method pre-assigns the height of excavation point which can be determined through path planning. A closed form solution is obtained for the first approach. The second method exploits the orthogonality between the normal vector at the excavation point and the z axis of the end-effector coordinate system. The geometry near the reclaiming point has been approximated as a plane, and the plane equation has been obtained by the least square method considering 8 adjacent points near the point. A closed form solution is not found for the second approach, however a linear approximate solution is provided.

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4-구륜 2-자유도 이동 로보트의 기구학 모델과 가우스함수를 이용한 경로설계 및 추적 알고리즘 (Kinematic model, path planning and tracking algorithms of 4-wheeled mobile robot 2-degree of freedom using gaussian function)

  • 김기열;정용국;박종국
    • 전자공학회논문지S
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    • 제34S권12호
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    • pp.19-29
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    • 1997
  • This paper presents stable kinematic modeling and path planning and path tracking algorithms for the poisition control of 4-wheeled 2-d.o.f(degree of freedom) mobile robot. We drived the actuated inverse and sensed forward solution for the calculation of actuator velocity and robot velocities. the deal-reckoning algorithm is introduced to calculate the position of WMR in real time. The gaussian functions are applied to control and to design the smooth orientation angle of WMR and the path planning algorithm for obstacle avoidance is prosed. We composed feedback control system to compensate for error because of uncertainty kinematic modeling and measurement noise. The simulation resutls show that the proposed kinematkc modeling and path planning and feedback control algorithms are useful.

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