• 제목/요약/키워드: Robust Speed Control System

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50,000rpm급 초고속 소형 정밀모터용 능동 자기베어링 시스템 제어 및 설계 (Control and Design of 50,000rpm Class Active Magnetic Bearing System for High Speed-Small Size Precision Motor)

  • 강규홍
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제55권8호
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    • pp.408-415
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    • 2006
  • This paper deal with control and design of 50,000rpm class Active Magnetic Bearing(AMB) system for high speed precision motor. In the design of AMB system, the design parameters adopted high robust rotor shaft, Active Magnetic Bearing, sensor and control system. In the design of Magnetic Bearing, 2-D Finite Element Method(FEM) is used and transfer matrix method is using for rotor dynamics. The control accuracy of high speed AMB system is demonstrated by experimentations.

보이스코일 모터를 이용한 유연한 조작기의 H$_\infty$제어 (H$_\infty$ control of a flexible manipulator using voice coil motor)

  • 박형욱;박노철;박영필;김승호
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1997년도 한국자동제어학술회의논문집; 한국전력공사 서울연수원; 17-18 Oct. 1997
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    • pp.1700-1703
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    • 1997
  • The flexibility of the manipulator inevitably inducess the vibration at the end effector. For the increase in speed and accuracy at the end tip, in this work, position and vibration control of a flexible manipuator with a separate voice coil type actrator for vibration suppression, is studied. The flexible manipulator with a tip mass is modeled an Euler-Bernoulli beam. An H.inf. controller is designed in order to make the controlled system robust against unmodeled higher-order mode vibration of the manipulator, output sensor noise, and etc. Simulations and experiments show that the modeling of the system is valid and that robust vibration control of the flexible manipulator is efficiently achieved.

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영구자석 동기전동기의 강인한 디지털 속도 제어기법 (Robust Digital Speed Control Scheme of Permanent Magnet Synchronous Motor)

  • 정진우;최영식
    • 전력전자학회논문지
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    • 제16권1호
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    • pp.44-49
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    • 2011
  • 본 논문에서는 표면부착형 영구자석 동기전동기를 위하여 강인한 디지털 속도제어기를 제안한다. 제안된 속도제어기는 부하 토크관측기를 필요로 하지 않는 간단하며 부하 외란에 둔감한 디지털 제어 기법을 사용하므로 제어성능의 저하 없이 쉽고 단순하게 구현될 수 있다. 제안된 제어 알고리즘의 성능을 검증하기 위하여, 프로토타입 표면부착형 영구자석 구동시스템을 이용하여 시뮬레이션 및 실험을 하였다. 모터 파라미터 변동 하에서 수행된 시뮬레이션 및 실험결과를 통하여 제안된 기법이 표면부착형 영구자석 동기전동기의 속도를 정확하게 제어할 수 있음을 확인하였다.

전정기관 자극용 회전자극기를 취한 PMSM의 정밀 속도제어 (Precision Speed Control of PMSM for Stimulation of the Vestibular System Using Rotatory Chair)

  • 고종선;이태호;박병림;전칠환
    • 전력전자학회논문지
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    • 제5권5호
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    • pp.459-466
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    • 2000
  • 전정기관 자극용 회전자극기에 있어서 외란 관측기를 이용한 PMSM(permanent Magnet Synchronous Motor)의 강인한 정밀 속도 제어 방법에 대해서 제안한다. 본 제어기는 더욱 정확한 전정기관 평가를 가능하게 한다. 현기증을 유발시키기 위해서 지면에 수직인 회전축을 갖는 2D 자극기가 사용되어져 왔다. 그러나 정확한 현기증의 원인 규명을 위해서 회전축을 기울인 3D 자극기가 필요하다. 3D 자극기와 같이 기울임을 갖는 회 전자극기의 경우, 회전축에 대한 무게중심의 이격은 불평형 부하를 유발하게 된다. 이러한 경우에 대하여 강인한 속도 제어를 위한 외란 관측기를 이용하는 보상방법을 연구하였다 정확한 전정기관 자극을 위해 정밀한 속도 제어가 필요하며, 이러한 정밀 속도 제어에 있어서 외란의 영향을 제거하기 위해 데드비트 관측기와 같은 높은 이득을 갖는 관측기가 필요하다. 외란 관측기의 위치 제어에 대한 응용이 연구되어 졌다. 그러나 속도와 같은 노이즈가 많은 신호를 이용한 속도 제어에 있어서 데드비트 관측기는 노이즈 증폭 효과를 가져와 적용이 어렵다는 문제를 가지고 있다. 따라서 MA(Moving Average)처리를 이용하여 노이즈 효과를 저감한다. 이상의 제안된 알고리즘의 효과를 실험으로 보였다.

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고속 위치제어계의 강인 $H_\infty$ 제어 (Robust $H_\infty$ Control of High-Speed Positioning Systems)

  • 최진택;김종식
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 춘계학술대회 논문집
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    • pp.342-347
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    • 1995
  • Loop shaping $H_{\infty}$control with normalized coprime factorization was applied to a servo-motor driven high-speed powitioning system. The high-gain controller was designed to attenuate the postion errors caused byfriction effects and extermal disturbances. The non-existence of limit cycle was analyzed, though there is actuator saturation. The designed $H_{\infty}$control system was experimently tested in a rotary index table. Results showed its effectiveness to improve postion accuracy with out any compensation scheme for friction, and robustness to model perturbation and external disturbances.ces.

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Underwater Flight Vehicle의 지능형 심도 제어에 관한 연구 (A Study on a Intelligence Depth Control of Underwater Flight Vehicle)

  • 김현식;황수복;신용구;최중락
    • 한국군사과학기술학회지
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    • 제4권2호
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    • pp.30-41
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    • 2001
  • In Underwater Flight Vehicle depth control system, the followings must be required. First, It needs a robust performance which can get over the nonlinear characteristics due to hull shape. Second, It needs an accurate performance which has the small overshoot phenomenon and steady state error to avoid colliding with ground surface and obstacles. Third, It needs a continuous control input to reduce the acoustic noise. Finally, It needs an effective interpolation method which can reduce the dependency of control parameters on speed. To solve these problems, we propose a Intelligence depth control method using Fuzzy Sliding Mode Controller and Neural Network Interpolator. Simulation results show the proposed control scheme has robust and accurate performance by continuous control input and has no speed dependency problem.

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Design of the Fuzzy Sliding Mode Controller and Neural Network Interpolator for UFV Depth Control

  • Kim, Hyun-Sik;Park, Jin-Hyun;Choi, Young-Kiu
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.176.2-176
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    • 2001
  • In Underwater Flight Vehicle depth control system, the followings must be required. First, it needs robust performance which can get over nonlinear characteristics. Second, it needs accurate performance which have small overshoot phenomenon and steady state error. Third, it needs continuous control input. Finally, it needs interpolation method which can solve the speed dependency problem of controller parameters. To solve these problems, we propose adepth control method using Fuzzy Sliding Mode Controller and Neural Network Interpolator. Simulation results show the proposed method has robust and accurate control performance by the continuous control input and has no speed dependency problem.

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퍼지 슬라이딩 모드 제어기 및 신경망 보간기를 이용한 Underwater Flight Vehicle의 심도 제어 (Depth Control of Underwater Flight Vehicle Using Fuzzy Sliding Mode Controller and Neural Network Interpolator)

  • 김현식;박진현;최영규
    • 대한전기학회논문지:시스템및제어부문D
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    • 제50권8호
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    • pp.367-375
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    • 2001
  • In Underwater Flight Vehicle depth control system, the followings must be required. First, it needs robust performance which can get over modeling error, parameter variation and disturbance. Second, it needs accurate performance which have small overshoot phenomenon and steady state error to avoid colliding with ground surface or obstacles. Third, it needs continuous control input to reduce the acoustic noise and propulsion energy consumption. Finally, it needs interpolation method which can sole the speed dependency problem of controller parameters. To solve these problems, we propose a depth control method using Fuzzy Sliding Mode Controller with feedforward control-plane bias term and Neural Network Interpolator. Simulation results show the proposed method has robust and accurate control performance by the continuous control input and has no speed dependency problem.

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유도 전동기의 견실한 속도 제어를 위한 자기 조정 퍼지 제어 시스템의 구현 (Implementation of Self-Tuning Fuzzy Control System for Robust Speed Control of an Induction Motor)

  • 송호신;이오결;이준탁;우정인
    • 대한전기학회논문지
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    • 제43권2호
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    • pp.346-349
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    • 1994
  • In this paper, we implemented the variable spped controller of an induction motor using the self-tuning fuzzy control algorithms, which recently is invoking the remarkable interest. Also we preposed a self-tuning technique of scale factors which could easily design the fuzzy speed controller. Comparing with conventional PI speed controller, the performances of proposed fuzzy controller such as dynamic responses and its the robustness against load disturbance were substantially improved.

영구자석 동기전동기의 벡터 제어를 위한 퍼지 각가속도 관측기 기반의 퍼지 속도제어기 (Fuzzy Speed Regulator based on a Fuzzy Acceleration Observer for Vector Control of Permanent Magnet Synchronous Motors)

  • 정진우
    • 전기학회논문지
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    • 제60권2호
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    • pp.330-337
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    • 2011
  • This paper presents a new fuzzy speed controller based on a fuzzy angular acceleration observer to realize a robust speed control of permanent magnet synchronous motors(PMSM). The proposed speed controller needs the information of the angular acceleration, thus the first-order fuzzy acceleration observer is designed. The LMI existence condition is given for the proposed fuzzy speed controller, and the gain matrices of the controller are calculated. It is verified that the augmented control system consisting of the fuzzy speed controller and the fuzzy acceleration observer is mathematically stable. To validate the effectiveness of the proposed acceleration observer-based fuzzy speed controller, the simulation and experimental results are shown under motor parameter variations. It is definitely proven that the proposed control scheme can precisely track the speed of a permanent magnet synchronous motor.