• 제목/요약/키워드: Actuator nonlinearity

검색결과 76건 처리시간 0.025초

히스테리시스 주 루프의 비례관계를 이용한 형상기억합금 엑츄에이터의 Preisach 모델 (Preisach Model of Shape Memory Alloy Actuators Using Proportional Relationship of The Major Loop of Hysteresis)

  • 최병준;이연정;최봉열
    • 제어로봇시스템학회논문지
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    • 제8권9호
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    • pp.736-746
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    • 2002
  • There has been a great demand for smart actuators in the field of micro-machines. However, the control accuracy of smart actuators, e.g., a shape memory alloy(SMA) and a piezoceramic actuator, is limited due to the inherent hysteresis nonlinearity. The Preisach hysteresis model has emerged as an appropriate model f3r the behavior of those smart actuators. Yet it is still not easy to construct a practical model of hysteresis using the classical Preisach model. Accordingly, in this paper, we propose a new simple method for modeling of the hysteresis nonlinearity of SMA. Using only the proportional relation of the major loop of hysteresis, the proposed method makes the computation of the Preisach model easy. We prove the efficacy of the proposed model through the comparative the experimentation with the classical Preisach model.

압전 구동기와 레버 링키지를 이용한 6 자유도 스테이지의 비선형성 평가에 기초한 정밀 위치 제어기의 설계 (Precision Position Controller Design for a 6-DOF Stage with Piezoelectric Actuators and Lever Linkages Based on Nonlinearity Estimation)

  • 문준희;이봉구
    • 대한기계학회논문집A
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    • 제33권10호
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    • pp.1045-1053
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    • 2009
  • Precision stages for 6-DOF positioning, actuated by PZT stacks, which are fed back by gap sensors and guided by flexure hinges, have enlarged their application territory in micro/nano manufacturing and measurement area. The precision stages inherently have such limitations as the nonlinearity between input and output in piezoelectric stacks, feedback signal noise in precision capacitive gap sensors and low material damping in precision kinematic linkages of mechanical flexures. To surmount these limitations, the precision stage is modeled with physics-based variables, which are identified by transient response correspondence, and a gain margin calculation algorithm using the Prandtl-Ishlinskii model and describing function is newly developed to assess system performance more precisely than linear controller design schemes. Based on such analyses, a precision positioning controller is designed. Excellent positioning accuracy with rapid settlement accomplished by the controller is shown in step responses of the closed-loop system.

Hybrid Control of an Active Suspension System with Full-Car Model Using H$_{}$$\infty$/ and Nonlinear Adaptive Control Methods

  • Bui, Trong-Hieu;Suh, Jin-Ho;Kim, Sang-Bong;Nguyen, Tan-Tien
    • Journal of Mechanical Science and Technology
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    • 제16권12호
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    • pp.1613-1626
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    • 2002
  • This paper presents hybrid control of an active suspension system with a full-car model by using H$\sub$$\infty$/ and nonlinear adaptive control methods. The full-car model has seven degrees of freedom including heaving, pitching and rolling motions. In the active suspension system, the controller shows good performance: small gains from the road disturbances to the heaving, pitching and rolling accelerations of the car body. Also the controlled system must be robust to system parameter variations. As the control method, H$\sub$$\infty$/ controller is designed so as to guarantee the robustness of a closed-loop system in the presence of uncertainties and disturbances. The system parameter variations are taken into account by multiplicative uncertainty model and the system robustness is guaranteed by small gain theorem. The active system with H$\sub$$\infty$/ controller can reduce the accelerations of the car body in the heaving, pitching and rolling directions. The nonlinearity of a hydraulic actuator is handled by nonlinear adaptive control based on the back-stepping method. The effectiveness of the controllers is verified through simulation results in both frequency and time domains.

MR Brake를 이용한 공압근육매니퓰레이터의 지능제어 (Performance Improvement of Pneumatic Artificial Muscle Manipulators using Magneto-Rheological Brake)

  • 안경관;;안영공
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 춘계학술대회논문집
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    • pp.572-575
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    • 2005
  • A novel pneumatic artificial muscle actuator (PAM actuator), which has achieved increased popularity to provide the advantages such as high strength and high power/weight ratio, low cost, compactness, ease of maintenance, cleanliness, readily available and cheap power source, inherent safety and mobility assistance to humans performing tasks, has been regarded during the recent decades as an interesting alternative to hydraulic and electric actuators. In order to realize satisfactory control performance, a variable damper Magneto Rheological Brake (MRB), Is equipped to the Joint of the manipulator. Superb mixture of conventional PID controller and a phase plane switching control method brings us a novel controller. This proposed controller is appropriate for a kind of plants with nonlinearity, uncertainties and disturbances. The experiments were carried out in practical PAM manipulator and the effectiveness of the proposed control algorithm was demonstrated through experiments, which had proved that the stability of the manipulator can be improved greatly in a high gain control by using MRB with phase plane switching control method and without regard for the changes of external inertia loads.

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Performance Improvement of Pneumatic Artificial Muscle Manipulators Using Magneto-Rheological Brake

  • Ahn, Kyoung-Kwan;Cong Thanh, TU Diep;Ahn, Young-Kong
    • Journal of Mechanical Science and Technology
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    • 제19권3호
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    • pp.778-791
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    • 2005
  • A novel pneumatic artificial muscle actuator (PAM actuator), which has achieved increased popularity to provide the advantages such as high strength and high power/weight ratio, low cost, compactness, ease of maintenance, cleanliness, readily available and cheap power source, inherent safety and mobility assistance to humans performing tasks, has been regarded during the recent decades as an interesting alternative to hydraulic and electric actuators. However, some limitations still exist, such as the air compressibility and the lack of damping ability of the actuator bring the dynamic delay of the pressure response and cause the oscillatory motion. Then it is not easy to realize the performance of transient response of pneumatic artificial muscle manipulator (PAM manipulator) due to the changes in the external inertia load with high speed. In order to realize satisfactory control performance, a variable damper-Magneto­Rheological Brake (MRB), is equipped to the joint of the manipulator. Superb mixture of conventional PID controller and a phase plane switching control method brings us a novel controller. This proposed controller is appropriate for a kind of plants with nonlinearity, uncertainties and disturbances. The experiments were carried out in practical PAM manipulator and the effectiveness of the proposed control algorithm was demonstrated through experiments, which had proved that the stability of the manipulator can be improved greatly in a high gain control by using MRB with phase plane switching control method and without regard for the changes of external inertia loads.

퍼지 기법과 PID 제어기를 이용한 외팔보의 능동 진동 제어 (Active Vibration Control of a Cantilever Beam Using Fuzzy Control Scheme and PID Controller)

  • 최수영;김진태;박기헌
    • 전자공학회논문지SC
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    • 제40권1호
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    • pp.1-10
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    • 2003
  • 본 논문에서는 외팔보 시스템의 능동 진동 제어를 위하여 퍼지 기법으로 동조한 PID 제어기 설계기법을 제시하였다. 직접 제작된 전자석은 작동기로 사용되었으며, 레이져 감지기가 보의 굽힘 변위를 측정하는데 사용되었다. 작동기와 감지기의 물리적 제한 때문에 실험 시스템이 비동위치(Noncollocated) 형태가 되었으며 비접촉식 제어 시스템을 이룬다 시스템의 모델링은 자유진동 방정식에 의한 모달 해석 방법으로 구하였으며 작동기로부터 감지기까지의 전달함수는 전자석 자동기차 보의 역학 방정식을 조합하여 구하였다. 일반적으로 PID 제어기는 산업 현장에서 널리 사용되고 있으나, 비선형성이 강한 시스템이나 시변 특성을 갖는 시스템에서 적절한 PID 이득값을 결정하는 것은 어렵다. 이에 본 논문에서는 자동적으로 PID 이득 값을 조절하는 퍼지 기법으로 동조한 PID 제어기를 설계하여 비선형성이 강한 전자석을 작동기로 사용하는 외팔보 시스템의 진동 제어에 적용하였다. 시뮬레이션과 실험적 결과를 통하여 설계된 제어기의 진동 감쇠 효과와 성능을 검증하였으며, PID 제어기의 경우와 비교하여 더 나은 진동 제어 성능을 가짐을 실험적 결과로부터 증명하였다.

면취없는 부품의 조립을 위한 로보트 손목기구의 개발 (Development of a Robot Wrist for the Assembly of Chamferless Parts)

  • 권대갑;정충민
    • 한국정밀공학회지
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    • 제9권2호
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    • pp.36-43
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    • 1992
  • In this paper, a robot assembly wrist, which is able to assemble chamferless parts, has been developed. The RCC (Remote Center Compliance) structure is used as a basic structure. 5 position sensors and 4 pneumatic actuators are installed additionally to measure the deformation of RCC structure and correct the errors actively. Due to the restricted direction of actuation, a decision rule which selects the suitable actuator according to the position sensor signals is needed. For this purpose, a neural network is used and it is experimentally shown that the nerual network overcomes system's nonlinearity. This paper presents fundamental experiment results for the insertion of parts with several clearance.

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LPM의 동추력특성측정 및 선형화 제어기법 개발 (A Development of dynamic characteristics measuring system and linearization control method for Linear Pulse Motor)

  • 김문환;이남기;김국헌
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 하계학술대회 논문집 F
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    • pp.2146-2148
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    • 1997
  • We had developed a prototype Linear Pulse Motor(LPM) for the linear motion actuator. In this paper, it is mentioned a new dynamic equations which is considered the nonlinearity of the thrust force of LPM. And a measuring method of ripples in the thrust forces is proposed and the ripples were measured in the laboratory. In the experimental results, it is shown the validity of the proposed measuring method for catching of the ripple values and waveforms in the thrust force.

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차동PWM방식에 의한 유압실린더의 위치제어 (Position Control of a Hydraulic Cylinder by a Differential PWM Method)

  • 권기수;이창돈;이진걸
    • Journal of Advanced Marine Engineering and Technology
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    • 제15권4호
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    • pp.54-69
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    • 1991
  • This study deals with the position control of a hydraulic cylinder system operated by two port 3-way high speed solenoid valve in Pulse-Width-Modulation mode, instead of using conventional electro-hydraulic servovalve. Due to the complexity and the relatively poor reliability of the servovalve, an actuator using simpler and more study high speed solenoid valve will be presented. The high speed solenoid valve acts as converters of electronic pulse signal to hydraulic ones. It has been pointed out that there are practical problems to be solved in the PWM system, that is (1) accuracy of positioning control becomes considerably insufficient because the system is affected by on/off action of the solenoid valves, and (2) serious nonlinerality appears in the valve characteristics as a result of the switching behavior of the valves. As a method to overcome these defects, the differential PWM driving method of a hydraulic cylinder that improved the steady-state-error, flow rate nonlinearity in simple PWM, and the hydraulic hunting of dead time compensated-PWM driving is proposed in this study.

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Characteristic Analysis of an Traveling Wave Ultrasonic Motor using a Cylindrical Dynamic Contact Model

  • Ro, Jong-Suk;Yi, Kyung-Pyo;Chung, Tae-Kyung;Jung, Hyun-Kyo
    • Journal of Electrical Engineering and Technology
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    • 제8권6호
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    • pp.1415-1423
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    • 2013
  • The traveling wave ultra-sonic motor (TWUSM) is operated through the frictional force between the rotor and the stator. Hence, the contact mechanism should be analyzed to estimate the motor performance. However, the nonlinearity of the contact mechanism of the TWUSM makes it difficult to propose a proper contact model and a characteristic analysis method. To address these problems, a novel contact model is proposed and be termed the cylindrical dynamic contact model (CDCM) in this research. An estimation method of the motor performance is proposed using the CDCM, an analytical method, and a numerical method. The feasibility and usefulness of the proposed characteristic analysis are verified through experimental data.