• 제목/요약/키워드: 백스테핑

검색결과 62건 처리시간 0.024초

만타형 잠수정의 강인 제어기 설계 (Robust Controller Design of Manta-type Unmanned Underwater Vehicle)

  • 임종국;김준영
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2010년도 추계학술발표논문집 2부
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    • pp.688-691
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    • 2010
  • 본 논문에서는 이전에 개발된 만타형 무인 잠수정의 수학적 모델을 기초로 하여 모델 불확실성과 외란이 존재하는 경우에 강인한 제어 성능을 나타낼 수 있는 강인 제어기를 설계하였다. 제어기 설계는 수심 제어와 방향 제어로 분리하여 수행하였고, 이를 위하여 6자유도의 수학적 운동 방정식을 수심 및 방향 제어를 위한 운동 방정식으로 각각 표현하였다. 운동 방정식에 나타나는 유체력 계수에 불확실성이 존재하고 운항 중 발생하는 조류등을 외란이 존재하는 것으로 생각하고 강인 제어기를 설계하였다. 강인 제어기의 전체적인 구조는 백스테핑 방법을 사용하였고, 모델 불확실성과 조류를 외란으로 가정하여 외란의 영향을 효과적으로 감쇠시킬 수 있는 $L_2$-gain 분석 개념을 이용하였다. 시뮬레이션은 제어기 설계에 사용된 유체력 계수에 실제값과 차이를 주었고, 조류의 모델을 포함시켜 수행하였다. 시뮬레이션 결과는 모델 불확실성과 외란의 존재하는 경우에도 제어 성능에 큰 변화가 나타나지 않는 것을 보여 주었다.

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수중 자율 운동체의 방향 제어를 위한 자기회귀 웨이블릿 신경회로망 기반 적응 백스테핑 제어 (Self-Recurrent Wavelet Neural Network Based Adaptive Backstepping Control for Steering Control of an Autonomous Underwater Vehicle)

  • 서경철;유성진;박진배;최윤호
    • 제어로봇시스템학회논문지
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    • 제13권5호
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    • pp.406-413
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    • 2007
  • This paper proposes a self-recurrent wavelet neural network(SRWNN) based adaptive backstepping control technique for the robust steering control of autonomous underwater vehicles(AUVs) with unknown model uncertainties and external disturbance. The SRWNN, which has the properties such as fast convergence and simple structure, is used as the uncertainty observer of the steering model of AUV. The adaptation laws for the weights of SRWNN and reconstruction error compensator are induced from the Lyapunov stability theorem, which are used for the on-line control of AUV. Finally, simulation results for steering control of an AUV with unknown model uncertainties and external disturbance are included to illustrate the effectiveness of the proposed method.

TORA 시스템을 추적하기 위한 백스테핑 제어기 설계 (Backstepping Controller Design for tracking the TORA Sysem)

  • 권오봉;김동헌;현근호;이형창;양해원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 B
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    • pp.779-781
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    • 1999
  • In this paper we consider the TORA system and use backstepping to design active controllers for tracking; this problem is much more challenging than stabilization. We show that the control effort of the closed-loop system can be significantly improved by exploiting the backstepping design.

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백스테핑을 이용한 이동 로봇의 경로 제어기의 설계 (Trajectory Controller Design of Mobile Robot Systems based on Back-stepping Procedure)

  • 이기철;이성렬;류신형;고재원;박민용
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2000년도 하계종합학술대회 논문집(5)
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    • pp.23-26
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    • 2000
  • Generally, the wheel-driven mobile robot systems, by their structural property, have nonholonomic constraints. These constraints are not integrable and cannot be written as time derivatives of some functions with respect to the generalized coordinates. Hence, nonlinear approaches are required to solve the problems. In this paper, the trajectory controller of wheeled mobile robot systems is suggested to guarantee its convergence to reference trajectory. Design procedure of the suggested trajectory controller is back-stepping scheme which was introduced recently in nonlinear control theory. The performance of the proposed trajectory controller is verified via computer simulation. In the simulation, the trajectory controller is applied to differentially driven robot system and car-like mobile robot system on the assumption that the trajectory planner be given.

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순궤환 비선형계통의 백스테핑 없는 적응 신경망 제어기 (Adaptive Neural Control for Strict-feedback Nonlinear Systems without Backstepping)

  • 박장현;김성환;박영환
    • 전기학회논문지
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    • 제57권5호
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    • pp.852-857
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    • 2008
  • A new adaptive neuro-control algorithm for a SISO strict-feedback nonlinear system is proposed. All the previous adaptive neural control algorithms for strict-feedback nonlinear systems are based on the backstepping scheme, which makes the control law and stability analysis very complicated. The main contribution of the proposed method is that it demonstrates that the state-feedback control of the strict-feedback system can be viewed as the output-feedback control problem of the system in the normal form. As a result, the proposed control algorithm is considerably simpler than the previous ones based on backstepping. Depending heavily on the universal approximation property of the neural network (NN), only one NN is employed to approximate the lumped uncertain system nonlinearity. The Lyapunov stability of the NN weights and filtered tracking error is guaranteed in the semi-global sense.

백스테핑 기법을 이용한 적응 비선형 제어기 설계에 관한 연구 (A Study on the Design of Adaptive Nonlinear Controller using Backstepping Technique)

  • 김민수;현근호;이형찬;양해원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 B
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    • pp.588-591
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    • 1998
  • In this paper, we present a robust adaptive backstepping output feedback controller for nonlinear systems perturbed by unmodelled dynamics and disturbances. Especially, backstepping technique with modular approach is used to separately design controller and identifier. The design of identifier is based on the observer-based scheme which possesses a strict passivity property of observer error system. We will use Switching-${\sigma}$ modification at the update law and the modified control law to attenuate the effects of undodelled dynamics and disturbances for nonlinear systems.

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유도전동기의 적응 비선형제어 (Adaptive Nonlinear Control of an Induction Motor)

  • 윤성식;남기범;박창호;윤태웅;최익;깅광배
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 하계학술대회 논문집 A
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    • pp.115-117
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    • 1997
  • 본 논문에서는 유도전동기의 적응 비선형 제어에 대해 논한다. 제어 목적은 회전자저항의 불확실성에도 불구하고 유도전동기의 속도 및 자속을 분리하여 제어하는 것이며, 이를 위해 백스테핑(Backstepping) 기법을 사용한 비선형제어기와 회전자 저항 추정기를 결합한다. 제안된 적응제어시스템은 내부의 모든 변수가 유계(Bounded)되어 있다는 점에서 안정하며, 더불어 그 개선된 성능을 모의실험을 통해 보인다.

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불확실성 적응기법을 이용한 비선형 시스템의 강인 백스테핑 설계 (Robust Backstepping Design of Nonlinear Systems Using Adaptation Strategy for Uncertaninties)

  • 김동헌;김응석;양해원
    • 제어로봇시스템학회논문지
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    • 제7권7호
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    • pp.605-613
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    • 2001
  • In this paper, we design a robust adaptive controller for a nonlinear system with uncertainties to be rejected via disturbance adaptation law. The nonlinear system considered has unknown nonlinear functions being influenced by external disturbance. The upper bound of unknown nonlinear functions at each time is estimated by using a disturbance adaptation law. The estimated nonlinear functions are used to design a stabilizing function a control input. Tuning function is used to estimates unknown system parameter without overparametrization. A set-point regulation error converges to a residual set close to zero asymptotically. The effectiveness of the proposed controller is investigated by computer simulation.

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미지 파라미터를 갖는 쿼드로터의 적응 백스테핑 호버링 제어 (Adaptive Backstepping Hovering Control for a Quadrotor with Unknown Parameters)

  • 이근욱;박진배;최윤호
    • 제어로봇시스템학회논문지
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    • 제20권10호
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    • pp.1002-1007
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    • 2014
  • This paper deals with the adaptive backstepping hovering control for a quadrotor with model parameter uncertainties. In this paper, the backstepping based technique is utilized to design a nonlinear adaptive controller which can compensate for the motor thrust factor and the drag coefficient of a quadrotor. First, the quadrotor nonlinear dynamics is derived using Newton-Euler formulation. In particular, we use the ${\pi}/4$ shifted coordinate for x- and y-axis of a quadrotor. Second, an adaptive backstepping based attitude and altitude tracking control method is presented. The system stability and the convergence of tracking errors are proven using the Lyapunov stability theory. Finally, the simulation results are given to verify the effectiveness of the proposed control method.

백스테핑제어기를 이용한 전기유압액추에이터의 위치제어 (Position control of Electro hydrostatic actuator (EHA) using a modified back stepping controller)

  • 도안녹치남;윤종일;안경관
    • 드라이브 ㆍ 컨트롤
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    • 제9권3호
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    • pp.16-22
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    • 2012
  • Nowadays, electro hydrostatic actuator (EHA) has shown great advantages over the conventional hydraulic actuators with valve control system. This paper presents a position control for an EHA using a modified back stepping controller. The controller is designed by combining a backstepping technique and adaptation laws via special Lyapunov functions. The control signal consists of an adaptive control signal to compensate for the nonlinearities and a simple robust structure to deal with a bounded disturbance. Experiments are carried out to investigate the effectiveness of the proposed controller.