• 제목/요약/키워드: Torque controller

검색결과 988건 처리시간 0.028초

지능제어를 이용한 평면 여자유도 매니퓰레이터와 환경과의 상호작용에 관한 연구 (Study on Interaction of Planar Redundant Manipulator with Environment based on Intelligent Control)

  • 유봉수;김신호;조중선
    • 한국지능시스템학회논문지
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    • 제19권3호
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    • pp.388-397
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    • 2009
  • 로봇 매니퓰레이터를 이용한 대부분의 작업은 환경과의 상호작용을 요구하며, 위치제어, 충돌제어 그리고 힘제어로 구성된다. 위치제어는 환경에 도착하는 방법을 의미하고, 환경에 접촉하는 순간은 충돌제어 문제를 야기하며, 힘제어는 환경과의 충돌후에 원하는 힘궤적을 유지하는 것이다. 이러한 세 가지 제어문제는 순차적으로 발생하므로, 각각의 제어 알고리즘은 독립적으로 개발되어야 한다. 특히 여자유도 매니퓰레이터에서 이러한 세 가지 제어문제는 독립된 중요한 연구 주제이다. 예를 들어, 관절 토크 최소화와 충격힘 최소화는 여자유도 매니퓰레이터의 대표적인 연구주제이다. 본 논문에서는 단일 작업을 통하여 세 가지 제어문제를 구성하였다. 위치제어는 각 관절의 토크와 토크변화 그리고 충돌 시의 충돌힘 최소화를 위하여 개발되었다. 따라서 충돌제어의 초기조건은 이전의 위치제어 알고리즘으로부터 최적화 되고, 그러한 제어 전략은 충돌제어의 결과를 개선시킨다. 유사하게, 힘제어 문제의 초기조건은 이전의 위치제어와 충돌제어로부터 간접적으로 최적화된다. 힘제어 알고리즘은 각 관절 토크와 힘외란 최소화시키는 개념을 사용하였다. 모의실험 결과는 제안된 알고리즘의 타당성을 보여준다.

Current Sliding Mode Control with a Load Sliding Mode Observer for Permanent Magnet Synchronous Machines

  • Jin, Ningzhi;Wang, Xudong;Wu, Xiaogang
    • Journal of Power Electronics
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    • 제14권1호
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    • pp.105-114
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    • 2014
  • The sliding mode control (SMC) strategy is applied to a permanent magnet synchronous machine vector control system in this study to improve system robustness amid parameter changes and disturbances. In view of the intrinsic chattering of SMC, a current sliding mode control method with a load sliding mode observer is proposed. In this method, a current sliding mode control law based on variable exponent reaching law is deduced to overcome the disadvantage of the regular exponent reaching law being incapable of approaching the origin. A load torque-sliding mode observer with an adaptive switching gain is introduced to observe load disturbance and increase the minimum switching gain with the increase in the range of load disturbance, which intensifies system chattering. The load disturbance observed value is then applied to the output side of the current sliding mode controller as feed-forward compensation. Simulation and experimental results show that the designed method enhances system robustness amid load disturbance and effectively alleviates system chattering.

Dynamic Modeling and Observer-based Servomechanism Control of a Towing Rope System

  • Tran, Anh Minh D.;Kim, Young Bok
    • 드라이브 ㆍ 컨트롤
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    • 제13권4호
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    • pp.23-30
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    • 2016
  • This paper presents a control-oriented dynamical model of a towing rope system with variable-length. In this system, a winch driven by a motor's torque uses the towing rope to pull a cart. In general, it is a difficult and complicated process to obtain an accurate mathematical model for this system. In particular, if the rope length is varied by operating the winch, the varying rope dynamics needs to be considered, and the key physical parameters need to be re-identified... However, real time parameter identification requires long computation time for the control scheme, and hence undesirable control performance. Therefore, in this article, the rope is modeled as a straight massless segment, with the mass of rope being considered partly with that of the cart, and partly as halfway to the winch. In addition, the changing spring constant and damping constant of the towing rope are accounted for as part of the dynamics of the winch. Finally, a reduced-order observer-based servomechanism controller is designed for the system, and the performance is evaluated by computer simulation.

Linear Quadratic Servo Design for Magnetic Levitation Systems Considering Disturbance Forces from Linear Synchronous Motor

  • Kim, Chang-Hyun;Ahn, Hanwoong;Lee, Ju;Lee, Hyungwoo
    • Journal of Electrical Engineering and Technology
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    • 제12권2호
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    • pp.944-949
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    • 2017
  • Recently, the demand of maglev systems in the manufacturing industry for LCD and OLED display panels, which are required to be very clean and possess vacuum systems, has been increasing due to their characteristics such as being non-contact, noise free and eco-friendly. However, it is still a challenge to simultaneously control both the propulsion and levitation for their interactive effect difficult to be exactly measured. In this paper, we proposed a new tuning method for controlling the magnetic levitation force robustly against the levitation disturbance caused by a propulsion system, based on LQ servo optimal control. The disturbance torque of the LSM propulsion system is calculated through FEM analysis in such a way that the LQ servo controller is determined in order to minimize the effect of the disturbance. The robust performance of the proposed LQ servo control method for the in-track type magnetic levitation systems is demonstrated via simulations and experiments.

전자비례감압밸브를 이용한 가변용량형 유압펌프의 다기능 제어 (Multi-function Control of Hydraulic Variable Displacement Pump with EPPR Valve)

  • 정동수;김형의;강이석
    • 한국자동차공학회논문집
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    • 제14권6호
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    • pp.160-170
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    • 2006
  • If hydraulic pump controlled by mechanical type regulator has more than one control function, the construction of regulator will be very complicated and control performance falls drastically. It is difficult to have more than one control function for hydraulic pump controlled by electronic type hydraulic valve due to the inconsistency of controllers. This paper proposes a multi-function control technique which controls continuously flow, pressure and power by using EPPR(Electronic Proportional Pressure Reducing) valve in swash plate type axial piston pump. Nonlinear mathematical model is developed from the continuity equation for the pressurized control volume and the torque balance for the swash plate motion. To simplify the model we make the linear state equation by differentiating the nonlinear model. A reaction spring is installed in servo cylinder to secure the stability of the control system. We analyze the stability and disturbance by using the state variable model. Finally, we review the control performances of flow, pressure and power by tests using PID controller.

3자유도 힘 반향 역감장치 (3DOF Force-Reflection Interface)

  • 강원찬;김동옥;신석두;김영동
    • 전력전자학회논문지
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    • 제4권5호
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    • pp.455-461
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    • 1999
  • 본 논문에서는 가상환경 내의 물체로부터 역감을 얻을 수 있는 3자유도 힘 반향 장치를 제안한다. 이 시스템은 디바이스와 가상환경의 모델과 힘 반향 렌더링 알고리즘 등으로 구성되었다. 평행링크 메커니즘과 와이어에 의한 토크전달 그리고 임피던스 제어가 가능한 제어기를 사용해 3자유도 힘 반향 역감장치(Force-reflecting device)를 설계하였다. 위치 함수만으로 계산되는 힘 반향동작은 God-Object 알고리즘을 사용했다. 3차원 가상물체와 시험 제작한 역감장치(Force-reflecting device)를 인터페이스 실험을 통해 3차원 가상물체와 접촉과 비접촉 그리고 푸쉬 버튼을 만지는 느낌을 검출하였다.

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High Performance Speed Control of Switched Reluctance Motor

  • Song, Byeang-Seab;Yoon, Yong-Ho;Choi, Jun-Hyuk;Kim, Jun-Ho;Won, Chung-Yuen
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2001년도 Proceedings ICPE 01 2001 International Conference on Power Electronics
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    • pp.457-461
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    • 2001
  • Advantages of switched reluctance motor(SRM) drives make it an attractive candidate for replacing adjustable speed ac and dc drives in both industrial and consumer applications. Furthermore, a simple, low cost and robust SRM drive can be efficiently operated in the hostile environment of an automobile. Generally, the speed control of SRM has a large step change or large torque reference, the output of its PI controller is often saturated. When this happens, the integral state is not consistent with the SRM input, while may give rise to the windup phenomenon. This paper proposes anti-windup control method for SRM speed control system by hysteresis current controlled asymmetry bridge converter. The experimental results show that the speed response has much improved performance, such as a small overshoot and fast settling time at the acceleration and particulary deceleration period with braking mode.

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영구자석을 이용한 밸브모드 MR 감쇠기 설계에 관한 연구 (A Study on the Design of Valve Mode MR Damper using Permanent Magnet)

  • 김정훈;오준호
    • 한국정밀공학회지
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    • 제17권10호
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    • pp.69-76
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    • 2000
  • Lots of semi-active control devices have been developed in recent years because they have the best features of passive and active system. Especially, controllable magneto-rheological(MR) fluid devices have received significant attention in these area of research. The MR fluid is the material that reversibly changes from a free-flowing, linear viscous fluid to a semisolid with a controllable yield strength in milliseconds when exposed to a magnetic field. If the magnetic field is induced by moving a permanent magnet instead of applying current to a solenoid, it is possible to design a MR damper consuming low power because the power consumption is reduced at steady state. This paper proposes valve mode MR damper using permanent magnetic circuit that has wide range of operation with low power consumption, a design parameter is adopted. The magnetic circuit, material of choke and choke type are selected experimentally with the design parameter. The behaviors of the damper are examined and torque tracking control using PID feedback controller is performed for step, ramp and sinusoidal trajectiories.

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구륜이동로봇의 모델링과 Time-Scaling 기법을 이용한 경로추적 (Modeling of Wheeled-Mobile Robots and Path-Tracking using Time-Scaling Method)

  • 김종수
    • 한국컴퓨터산업학회논문지
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    • 제5권9호
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    • pp.993-1004
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    • 2004
  • 본 논문에서는 구동토크의 제약을 갖는 4륜 2자유도 구륜이동로봇의 기구학 및 동력학 모델링과 경로추적을 다룬다. 유도된 기구학 모델을 이용하여 구륜이퐁로봇의 가제어성을 조사한다. 순간일치좌표계와 힘/토크의 전파, 뉴튼의 평형법칙을 이용하여 동려학 모델을 유도한다. 역동력학에 의해 산출된 구동토크가 한계 구동토크를 초과할 경우, time-scaling 기법을 이용하여 기준제적을 수정함으로써 구륜이동로봇이 기준경로를 추적하도록 한다. 제어기는 모델링 불확실성과 측정 잡음 등으로 인하여 발생하는 오차를 보상하도록 설계한다. 또한 본 논문에서 제시된 기법의 유효성을 입증하기 위해 모의실험을 수행하고 그 결과를 제시한다.

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Dynamic Modeling and Stabilization Techniques for Tri-Rotor Unmanned Aerial Vehicles

  • Yoo, Dong-Wan;Oh, Hyon-Dong;Won, Dae-Yeon;Tahk, Min-Jea
    • International Journal of Aeronautical and Space Sciences
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    • 제11권3호
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    • pp.167-174
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    • 2010
  • The design, dynamics, and control allocation of tri-rotor unmanned aerial vehicles (UAVs) are introduced in this paper. A trirotor UAV has three rotor axes that are equidistant from its center of gravity. Two designs of tri-rotor UAV are introduced in this paper. The single tri-rotor UAV has a servo-motor that is installed on one of the three rotors, which enables rapid control of its motion and its various attitude changes-unlike a quad-rotor UAV that depends only on the angular velocities of four rotors for control. The other design is called 'coaxial tri-rotor UAV,' which has two rotors installed on each rotor axis. Since the tri-rotor type of UAV has the yawing problem induced from an unpaired rotor's reaction torque, it is necessary to derive accurate dynamic and design control logic for both single and coaxial tri-rotors. For that reason, a control strategy is proposed for each type of tri-rotor, and nonlinear simulations of the altitude, Euler angle, and angular velocity responses are conducted by using a classical proportional-integral-derivative controller. Simulation results show that the proposed control strategies are appropriate for the control of single and coaxial tri-rotor UAVs.