• 제목/요약/키워드: Jansen

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얀센 메커니즘 기반의 보행 기구 설계 (Design Walking System Based on Theo Jansen Mechanism)

  • 이현경;윤영규
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.404-410
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    • 2016
  • Compared to wheel locomotion, walking has many advantages : Better to cross over obstacles, the contact with ground is in a determined point, the ground is damaged less. Because Theo Jansen mechanism can make walking motion that is very soft, there are many researches about that mechanism. In this paper, We designed walking robot based on Theo Jansen mechanism. Most important design factor is velocity and stability. First of all, we considered kinematics knowledge and then, we made a new model by using simulation. Finally we developed the model by solving few design problems.

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최적 보행 동작 구현을 위한 시뮬레이션 기반 Jansen Mechanism 활용 보행 로봇 설계 및 구현. (Simulation-based Jansen mechanism utilizing walking robot of the design and implementation in order to implement the best walking movement.)

  • 김희찬;김승하
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.467-468
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    • 2016
  • The importance of the recent manufacturing industry have been made to invest in a lot of assistance and human resource development at the national dimension in which to rise again. However Learned in actual school education kinetic, and the use to how product design structural knowledge, Often it feels vague unlikely whether it is possible to derive an optimal product. In this study, by using the simulation-based Jansen Mechanism designed a walking robot, after optimization of the numerical consideration when designing for optimum walking motion, through simulation through the actual production resulting numerical information is examined whether valid. In addition, through the actual production was walking robot, to verify the validity of the simulation-based design.

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경사/장애물/특수 표면을 이동할 수 있는 얀센 매커니즘 기반의 보행기구 설계 (Pass obstacle walking robot using Jansen mechanism)

  • 송치광;박정빈;최훈;김종혁;안현겸;이건희
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.477-480
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    • 2016
  • Based on the Jansen mechanism theory, a walking robot is developed, which is able to overcome the given obstacles. Taking joint positions and leg directions as design parameters, the walking robot is analyzed. In order to analyze and optimize the leg motion, Edison program and Jansen mechanism optimization solver are used, respectively. It is found that Edison program is so effective to determine joint variables and position of leg direction. With the help of these programs, lots of trials or errors could be saved.

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얀센메커니즘을 이용한 로봇 설계 (Design of Robot Using of Jansen Mechanism)

  • 김병진;김현민;이효정
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.501-505
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    • 2016
  • In this study, a robot is implemented in H/W based on four-bar linkage mechanism and Jansen mechanism. Our goal is to finish the given path using given terms. The various programs was used to understand the mechanism in more detail. DISON m.Sketch, EDISON Designer, Theo Jansen Mechanism Optimization Solver. Using these programs, we can design the robot in more dtails and reduce errors and trials. For the design and implementation of a robot, it is need to get joint variable, a foot point, and their relation. Thus, the proposed kinematic analysis is very important process for the design and implementation of legged robots.

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테오 얀센 메커니즘을 이용한 다족 보행 로봇의 최적화 (The Optimization of Multi legged walking robot using Teo Jansen mechanism)

  • 고현진;박수빈
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.506-509
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    • 2016
  • In this paper, the multi-leg robot is designed using Teo Jansen mechanism. The purpose of this paper is to develop unique robot, which operates efficiently in any environment. In that case, speed and accuracy are required. The indication which evaluate the value is Ground Score according to the Jansen's mechanism. To optimize the Ground Score. Genetic Algorithm (GA) in MATLAB Toolbox is used, which is numerical analytic algorithm to quickly convergence into optimum point. The Optimization of value is visualized by M-Sketch. M-Sketch was useful for simulation and evaluation of mechanic's dynamic motion. The robot's draft is produced into finished product by Edison Designer.

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얀센 메커니즘을 이용한 보행로봇의 최적설계에 관한 연구 (A Research about optimum design of the walking robot using Jansen mechanism)

  • ;지형근
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.384-388
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    • 2016
  • This paper proposed a m.Sketch to search the optimal link lengths for a legged walking robot. In order to apply the m.Sketch for the proposed, set the design parameters of the constraints and use the m.Skecth to get optimal GL(Groud Length) and GAC(Ground Angle Coefficient). The legged robot designed based on four-bar linkage theory and Theo Jansen mechanism. The stride length of the legged walking robot was defined based on the proposed kinematic analysis. Use the Edison Design m.Sketch simulate and find the optimal link length having the best of the Ground Length (GL) and Ground Angle Coefficient(GAC). And use these length implemented the Theo Jansen mechanism both in Science box parts and acrylic. In addition to the further expansion of the legs to reach the goaltranslating heavy objects or person.

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Theo Jansen Mechanism을 이용한 라인 트레이서 leg의 설계

  • 전준엽;김종한;유환길
    • EDISON SW 활용 경진대회 논문집
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    • 제6회(2017년)
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    • pp.620-624
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    • 2017
  • Theo Jansen Mechanism을 바탕으로 다리부분의 상하진동폭을 줄여 전체 기구의 안정성을 갖추면서 전진거리를 늘리는 것을 목표로 시행착오를 거치면서 핵심 부위인 다리를 설계하였다.

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Jansen Mechanism을 이용한 보행로봇의 설계

  • 윤지훈
    • EDISON SW 활용 경진대회 논문집
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    • 제6회(2017년)
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    • pp.566-573
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    • 2017
  • Develop a leg walking robot with 'Janssen mechanism'. Using 'ScienceBox' base and add more items to improve moving speed and balance of the robot. To make the robot better, made optimized drawing and produced it using plastic with 3D printer and acyrl with Laser cutting machine.

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Jansen Mechanism을 이용한 보행로봇의 설계와 자동주행

  • 이병철
    • EDISON SW 활용 경진대회 논문집
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    • 제6회(2017년)
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    • pp.596-600
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    • 2017
  • 이 논문에서는 1자유도 시스템이며, DC모터로 간단히 구동 가능한 로봇으로, Jansen Mechanism을 사용한 4족보행 로봇을 설계 및 제작하고, 센서를 사용한 탐사 수행의 예시로 라인 트레이싱을 구현, 성능 테스트를 통해 차기 연구용 및 단가가 낮은 대량 생산형 로봇으로서의 가능성을 검증한다.

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