• 제목/요약/키워드: Parametric Robust Control

검색결과 118건 처리시간 0.022초

혼합 $H_2/H_{$\infty}$$\mu$-설계이론을 이용한 3관성 문제의 해법 (Mixed $H_2/H_{$\infty}$ and $\mu$-synthesis Approach to the Coupled Three-Inertia Problem)

  • 최연욱
    • 제어로봇시스템학회논문지
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    • 제7권11호
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    • pp.896-903
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    • 2001
  • This study investigates the use of mixed $H_2/H_{$\infty}$ and $\mu$-synthesis to construct a robust controller for the benchmark problem. The model treated in the problem is a coupled three-inertial system that reflects the dynamics of mechanical vibrations. This kind of problem requires to be satisfied the robust performance (both in the time and frequency-domain specifications). We, first, adopt the mixed $H_2/H_{$\infty}$ theory to design a feedback controller K(s). Next, $\mu$-synthesis method is applied to the overall system to make use of structured parametric uncertainty. This process permits higher levels of controller authority and reduces the conservativeness of the controller. Finally, the feedforward controller is also used to improve the transient response of the output. We confirm that all design specifications except a complementary sensitivity condition can be achieved.

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리파토프 정리를 이용한 구간 플랜트의 제어기 설계 (Robust Controller Design for interval Plant using Lipatov Theorem)

  • 이진규;차영호;정태진;박용식;정찬수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 추계학술대회 논문집 학회본부 B
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    • pp.479-481
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    • 1999
  • In this paper, We design low-order controller to achieve maximized controller stability margin and controller' Performance. FOPA(Fixed Order Pole Assignment) method is one of the approach to design controller in the parametric uncertain system. But the method to define a Target Polynomial is not explicit1y Known. In this paper, our goal is to find a controller Coefficient, such that performance and $l_2$ stability margin are maximized in the parametric uncertain system. Using Lipatove theorem and CDM(Coefficient Diagram Method), we set target polynomial constraints and design a controller which maximizes $l_2$ stability margin. we show effectiveness of the proposed controller design method by comparing $l_2$ stability many of the desired controller with that of the conventional robust controller.

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적분작용을 포함하는 로봇 매니퓰레이터의 출력궤환 강인제어 (A Robust Output Feedback Control of Robot Manipulators with Integral Action)

  • 신의석;이강웅
    • 전자공학회논문지SC
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    • 제37권1호
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    • pp.1-9
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    • 2000
  • 본 논문에서는 파라미터 변동 범위가 유한한 로봇 매니퓰레이터에 대한 출력궤환 강인제어기를 고이득 관측기를 사용하여 설계하였다. 적분제어를 포함하는 제안된 제어기는 이득제한에 따른 추종오차를 개선시키도록 하였다. 관절의 속도 측정치를 사용할 때의 문제점을 개선하기 위하여 고이득 관측기를 사용하였다. 미지의 파라미터 변동 범위에 대한 제한을 받지 않도록 제어기를 구성하였으며 전체 폐루프시스템의 상태궤적의 수렴성을 입증하였다. 제안된 방법을 2-링크 로봇 매니퓰레이터의 궤적제어에 적용하고 시뮬레이션을 통하여 성능을 확인하였다.

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능동 서스펜션 장치에의 대칭제어시스템 적용에 관한 연구 (A Study on Adopting Symmetric Control System in Active Suspension Equipment)

  • 박중현;김순호
    • 한국정보통신학회논문지
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    • 제10권4호
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    • pp.769-774
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    • 2006
  • 본 논문에서는 능동현가장치의 해석 및 설계에 최소위상시스템개념을 적용하여 제어시스템설계에 응용 할 수 있는 이론적 수식모델링에 관한 연구를 수행하였다. 최근의 현가장치설계에서는 강성과 댐핑을 능동적으로 제어하는 기술의 적용이 일반화 되고 있으며, 다른 차량안정성제어장치와의 연계성이 높아짐에 따라, 제어시스템설계에서 보다 내구성이 강하고 제어효과의 응답성이 빠르며 정도 또한 높은 제어장치의 필요성이 요구되고 있다. 본 연구는 센서와 액츄에이터의 위치관계에 따른 능동현가장치의 위상시스템을 해석하여 위와 같은 빠른 응답성과 높은 정도의 제어가 가능한 제어시스템을 해석, 설계하기 위하여 제어장치의 대칭성에 관한 해석을 하였다. 그리고 대칭인 대상시스템에 관한 대칭 제어시스템을 설계하기 위한 모델링 및 적용방법을 수식적으로 해석하였으며, 현가장치의 제어시스템설계에 중요한 내외란성 향상을 위한 강인제어시스템설계에 적용하는 방법에 관해 고찰하였다.

Identification and Robust $H_\infty$ Control of the Rotational/Translational Actuator System

  • Tavakoli Mahdi;Taghirad Hamid D.;Abrishamchian Mehdi
    • International Journal of Control, Automation, and Systems
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    • 제3권3호
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    • pp.387-396
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    • 2005
  • The Rotational/Translational Actuator (RTAC) benchmark problem considers a fourth-order dynamical system involving the nonlinear interaction of a translational oscillator and an eccentric rotational proof mass. This problem has been posed to investigate the utility of a rotational actuator for stabilizing translational motion. In order to experimentally implement any of the model-based controllers proposed in the literature, the values of model parameters are required which are generally difficult to determine rigorously. In this paper, an approach to the least-squares estimation of the parameters of a system is formulated and practically applied to the RTAC system. On the other hand, this paper shows how to model a nonlinear system as a linear uncertain system via nonparametric system identification, in order to provide the information required for linear robust $H_\infty$ control design. This method is also applied to the RTAC system, which demonstrates severe nonlinearities, due to the coupling from the rotational motion to the translational motion. Experimental results confirm that this approach can effectively condense the whole nonlinearities, uncertainties, and disturbances within the system into a favorable perturbation block.

A Robust Dynamic Decoupling Control Scheme for PMSM Current Loops Based on Improved Sliding Mode Observer

  • Shen, Hanlin;Luo, Xin;Liang, Guilin;Shen, Anwen
    • Journal of Power Electronics
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    • 제18권6호
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    • pp.1708-1719
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    • 2018
  • A complete current loop decoupling control strategy based on a sliding mode observer (SMO) is proposed to eliminate the influence of current dynamic coupling and back electromotive force (EMF) in the vector control of permanent magnet synchronous motors. With this strategy, current dynamic decoupling and back EMF compensation can be simultaneously achieved. Unlike conventional methods, the proposed strategy can avoid the disturbances caused by the parametric variations of motor systems and maintain the advantages of proportional integral (PI) controllers, which are robust and easy to operate. An improved SMO, which uses a special PI regulator other than a linear saturation function as the equivalent control law in the boundary layer of a sliding surface, is proposed to eliminate the estimated errors caused by the quasi-sliding mode and obtain a satisfactory decoupling performance. The stability and parameter robustness of the proposed strategy are also analyzed. Physical experimental results are presented to verify the validity of the method.

Quantitative Feedback Theory를 이용한 능동 자기베어링의 적용 연구 (A Study for Application of Active Magnetic Bearing using Quantitative Feedback Theory)

  • 이관열;이형복;김영배
    • 한국정밀공학회지
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    • 제18권11호
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    • pp.107-115
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    • 2001
  • Most of rotating machineries supported by contact bearing accompany lowering efficiency, vibration and wear. Moreover, because of vibration, which is occurred in rotating shaft, they have the limits of driving speed and precision. The rotor system has parametric variations or external disturbances such as mass unbalance variations in long operation. Therefore, it is necessary to research about magnetic bearing, which is able to support the shaft without mechanical contact and to control rotor vibration without being affected by external disturbances or parametric changes. Magnetic bearing system in the paper is composed of position sensor, digital controller, actuating amplifier and electromagnet. This paper applied the robust control method using quantitative feedback theory (QFT) to control the magnetic bearing. It also proposed design skill of optimal controller, in case the system has structured uncertainty, unstructured uncertainty and disturbance. Reduction of vibration is verified at critical rotating speed even external disturbance exists. Unbalance response, a serious problem in rotating machinery, is improved by magnetic bearing using QFT algorithm.

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3자유도 차량모델을 이용한 차선추종 µ 제어기 설계 (The Controller Design for Lane Following with 3-Degree of Freedom Vehicle Dynamics)

  • 지상원;임태우;유삼상;김환성
    • 동력기계공학회지
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    • 제17권3호
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    • pp.72-81
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    • 2013
  • Many articles have been published about a 2-degree of freedom model that includes the lateral and yaw motions for controller synthesis in intelligent transport system applications. In this paper, a 3-degree of freedom linear model that includes the roll motion is developed to design a robust steering controller for lane following maneuvers using ${\mu}$-synthesis. This linear perturbed system includes a set of parametric uncertainties in cornering stiffness and unmodelled dynamics in steering actuators. The state-space model with parametric uncertainties is represented in linear fractional transformation form. Design purpose can be obtained by properly choosing the frequency dependent weighting functions. The objective of this study is to keep the tracking error and steering input energy small in the presence of variations of the cornering stiffness coefficients. Furthermore, good ride quality has to be achieved against these uncertainties. Frequency-domain analyses and time-domain numerical simulations are carried out in order to evaluate these performance specifications of a given vehicle system. Finally, the simulation results indicate that the proposed robust controller achieves good performance over a wide range of uncertainty for the given maneuvers.

QFT를 이용한 파라미터 불확실성을 갖는 비최소위상 제어시스템의 강인한 제어기 설계 (Design of Robust Controller for Non-minimum Phase System with Parametric Uncertainty using QFT)

  • 김영철;김신구;조태신;최선욱;김근식
    • 전자공학회논문지SC
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    • 제38권3호
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    • pp.1-12
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    • 2001
  • 본 논문은 파라미터 불확실성을 갖는 비최소위상 시스템의 강인제어 문제를 고려한다. 먼저 불확실성을 갖는 비최소위상 시스템을 구간 최소위상 전달함수군과 Pade'근사화 형태로 시간지연 성분으로 변환하는 새로운 방법을 제시한다. 제안하게 될 제어기는 비최소위상 플랜트로 인한 시간지연 거동을 보상할 수 있도록 Smith 예측기 구조를 갖는 보상기로 구성된다. 최소위상 플랜트군의 피드백 제어기는 구조적 불확실성에 대해 주파수 영역의 설계사양의 강인 안정도를 만족하도록 QFT를 이용하여 설계되었다. 전체 시스템의 안정도와 성능은 예제를 통하여 입증한다.

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QFT를 이용한 전력 계통 안정화 장치 설계 (Design of Power System Stabilizer using QFT)

  • 이정필;정현화;김창현;정현환
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 추계학술대회 논문집 학회본부 A
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    • pp.187-189
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    • 2000
  • In this paper, QFT robust control strategy is proposed to improve stability of power systems in the presence of parametric uncertainty. The basic idea in QFT is to convert design specifications of a closed loop system and plant uncertainties into robust stability and performance bounds on the open loop transmission of the nominal system and then to design a controller by using the gain-phase loop sharing technique. The robustness of the QFT controller has been investigated on a single machine infinite bus model by nonlinear simulations.

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