• 제목/요약/키워드: Yawing motion control

검색결과 30건 처리시간 0.027초

외바퀴 로봇의 진행 방향 강인 제어 (Robust yaw Motion Control of Unicycle Robot)

  • 임훈;황종명;안부환;이장명
    • 제어로봇시스템학회논문지
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    • 제15권11호
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    • pp.1130-1136
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    • 2009
  • A new control algorithm for the yaw motion control of a unicycle robot has been proposed in this paper. With the increase of life quality, there are various transportation systems such as segway and unicycle robot which provide not only transportation but also amusement. In most of the unicycle robots share the same technology in that the directions of roll and pitch are controlled by the balance controllers, allowing the robots to maintain balance for a long period by continuously moving forward and backward. However, one disadvantage of this technology is that it cannot provide the capability to the robots to avoid obstacles in their path way. This research focuses to provide the yawing function to the unicycle robot and to control the yaw motion to avoid the obstacles as desired. For the control of yawing motion, the yaw angle is adjusted to the inertia generated by the velocity and torque of a yawing motor which is installed in the center axes of the unicycle robot to keep the lateral control simple. Through the real experiments, the effective and robustness of the yawing control algorithm has been demonstrated.

외바퀴 로봇의 Yaw 방향 회전 제어 (Rotation control for the Yaw-direction of Unicycle Robot)

  • 황종명;배동석;이장명
    • 로봇학회논문지
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    • 제3권4호
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    • pp.331-337
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    • 2008
  • The field of robots is being widely accepted as a new technology today. Many robots are produced continuously to impart amusement to people. Especially the robot which operates with a wheelbarrow was enough of a work of art to arouse excitement in the audiences. All the wheelbarrow robots share the same technology in that the direction of roll and pitch are acting as balance controllers, allowing the robots to maintain balance for a long period by continuously moving forward and backward. However one disadvantage of this technology is that they cannot avoid obstacles in their way. Therefore movement in sideways is a necessity. For the control of rotation of yawing direction, the angle and direction of rotation are adjusted according to the velocity and torque of rotation of a motor. Therefore this study aimed to inquire into controlling yawing direction, which is responsible for rotation of a robot. This was followed by creating a simulation of a wheelbarrow robot and equipping the robot with a yawing direction controlling device in the center of the body so as to allow sideway movements.

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조타에 의한 선박의 횡요 감소시스템의 개발 (Development of the Rudder Roll Control System of a Vessel in Irregular Waves)

  • 이승건;이경우;황성준;강동훈
    • 한국항해항만학회지
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    • 제29권10호
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    • pp.839-845
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    • 2005
  • 조타에 의해 불규칙파 중 선박의 선수동요 및 횡요를 제어하는 횡요 감소시스템에 관한 연구를 수행하였다. 횡요를 포함한 선박 운동 시뮬레이션을 위해 4-자유도 조종 운동방정식을 사용하였고, 선체에 가해지는 외력으로서 파강제력이 고려되었다. 파강제력은 3차원 특이점 분포법에서 얻어진 주파수 전달함수로부터 시간영역해석법을 적용하였다. 선수동요와 횡요를 제어하는 PD 제어기를 각각 구성하고, 이를 선형 결합하여 횡요 감소 조타 제어기를 구성하였다. 조타 속도 및 타의 종류를 변화시켜 선수동요 및 횡요의 제어효율을 검토하였다.

조타에 의한 선박의 횡요 감소시스템의 개발에 관한 연구 (A Study on Developing the Rudder Roll Control System of a Vessel in Irregular Waves)

  • 이승건;황성준;강동훈
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2005년도 추계학술대회 논문집
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    • pp.55-61
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    • 2005
  • 조타에 의해 불규칙파$\cdot$중 선박의 선수동요 및 횡요를 제어하는 횡요 감소시스템에 관한 연구를 수행하였다. 횡요를 포함한 선박 운동 시뮬레이션을 위해 4-자유도 조종 운동방정식을 사용하였고, 선체에 가해지는 외력으로서 파강제력이 고려되었다. 파강제력은 3차원 특이점 분포법에서 얻어진 주파수 전달함수로부터 시간영역해석법을 적용하였다. 선수동요와 횡요를 제어하는 PD 제어기를 각각 구성하고, 이를 선형 결합하여 횡요 감소 조타 제어기를 구성하였다. 조타 속도 및 타의 종류를 변화시켜 선수동요 및 횡요의 제어효율을 검토하였다.

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Design of a Fuzzy Compensator for Balancing Control of a One-wheel Robot

  • Lee, Sangdeok;Jung, Seul
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제16권3호
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    • pp.188-196
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    • 2016
  • For the balancing control of a one-wheel mobile robot, CMG (Control Moment Gyro) can be used as a gyroscopic actuator. Balancing control has to be done in the roll angle direction by an induced gyroscopic motion. Since the dedicated CMG cannot produce the rolling motion of the body directly, the yawing motion with the help of the frictional reaction can be used. The dynamic uncertainties including the chattering of the control input, disturbances, and vibration during the flipping control of the high rotating flywheel, however, cause ill effect on the balancing performance and even lead to the instability of the system. Fuzzy compensation is introduced as an auxiliary control method to prevent the robot from the failure due to leaning aside of the flywheel. Simulation studies are conducted to see the feasibility of the proposed control method. In addition, experimental studies are conducted for the verification of the proposed control.

자이로 효과의 피칭 모션을 고려한 한 바퀴 로봇의 모델 기반 롤링 모션 제어 (Model-Based Rolling Motion Control of an One-wheeled Robot Considering the Pitching Motion of a Gyroscopic Effect)

  • 이상덕;정슬
    • 전기학회논문지
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    • 제65권2호
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    • pp.335-341
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    • 2016
  • In general, a yawing motion concept is used for the lateral control of one wheel robot where the gimbal system is located horizontally. In this paper, another concept of the vertically located gimbal system is presented for the same purpose. Although the vertical concept undergoes an instability more easily than the horizontal one, the pitching motion of the gyroscopic effect is considered. Firstly, the trade-off relation between two balancing concepts are investigated by comparing the gyroscopic mechanism. Secondly, the dynamic model for the problem of the proposed concept is derived using the oscillatory inverted stick model. Thirdly, the stability of the model is analyzed using the phase trajectory method. Finally, the control performance of the system by a vibration controller is simulated.

수직 이동부하의 전기-유압 위치제어에 관한 연구 (A Study on the Electric-Hydraulic Position Control of Vertical Moving Plant)

  • 신규재
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 학술대회 논문집 전문대학교육위원
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    • pp.129-131
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    • 2000
  • The moving vehicle with disturbances has the 6 degree of freedom motion in the pitching, Yawing, and rolling directions of two independent axes. The control system in such a moving vehicle has to perform disturbance rejection. This paper present PID controller with disturbance rejection function, low sensitivity filter and notch filter for bending frequency rejection. The performance of a designed system has been certified by the simulation and experiment and experiment results.

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선박 자동접안을 위한 순수 횡 이동 모델링 및 제어기 설계 (Modeling and controller design of crabbing motion for auto-berthing)

  • 박종용;김낙완
    • 한국해양공학회지
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    • 제27권6호
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    • pp.56-64
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    • 2013
  • Crabbing motion is the pure sway motion of a ship without surge velocity. Thus, it can be applied to a berthing operation. Crabbing motion is induced by a peculiar operation method called the push-pull mode. The push-pull mode is induced by using a combination of the main propeller and side thruster. Two propellers generating the same amounts of thrust and rotating in opposite directions produce some yawing moment on a vessel but do not induce longitudinal motion. With the additional operation of side thrusters, the push-pull mode is used to induce a large amount of lateral force. In this paper, three-degree-of-freedom equations of motion such as for the surge, sway, and yaw are constructed for the crabbing motion. Based on these equations of motion, a feedback linearization control method is applied to auto-berthing control for a twin-screw ship with side thrusters. The controller can deal with the nonlinearity of a system, which is present in the berthing maneuver of a twin screw ship. A simulation of the auto-berthing of a ship is performed to validate the performance of the designed controller.

Disturbance rejection and performance improvement in a moving vehicle

  • Shin, Kyoo-Jae;Kim, Go-Do;Kwon, Young-Ahn
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1996년도 Proceedings of the Korea Automatic Control Conference, 11th (KACC); Pohang, Korea; 24-26 Oct. 1996
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    • pp.223-226
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    • 1996
  • The moving vehicle with disturbances has the 6 dof motion in the pitching, yawing and rolling directions of two independent axes. The control system in such a moving vehicle has to perform disturbance rejection well. The paper presents PID controller with disturbance rejection function, low sensitivity filter and notch the bending frequency rejection. The performance of a designed system has been certified by the simulation and experiment results.

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