• 제목/요약/키워드: Back-Stepping Control

검색결과 43건 처리시간 0.029초

백스텝핑을 기반으로 하는 BLDC 전동기의 위치 및 속도제어(이득 설정) (Position and Speed Control of the BLDC Motor based on the Back-stepping(Gain design))

  • 이승;전용호;조황
    • 한국전자통신학회논문지
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    • 제10권3호
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    • pp.403-411
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    • 2015
  • 본 논문은 백스텝핑 설계기법을 이용하여 BLDC 전동기의 위치 및 속도, 전류제어를 위한 제어기 설계방법을 제안한다. 또한, 전체 시스템을 안정화하며 추종성능을 향상시킬 수 있는 적절한 제어이득을 설정하기 위한 방법을 제시한다. 제안된 제어기를 120W급의 BLDC 전동기에 적용하여 위치, 속도 및 전류 레퍼런스를 추종하는 능력을 시뮬레이션 시험하였다. 설계된 제어기가 정상상태의 오차가 1% 이내를 가짐으로 상태 추종 성능에 대해 유용한 제어기임을 보일 수 있었다.

외란관측기를 갖는 RNN과 이중마찰관측기를 이용한 동적마찰모델에 대한 강인한 적응 백-스테핑제어 (Robust Adaptive Back-stepping Control Using Dual Friction Observer and RNN with Disturbance Observer for Dynamic Friction Model)

  • 한성익
    • 한국공작기계학회논문집
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    • 제18권1호
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    • pp.50-58
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    • 2009
  • For precise tracking control of a servo system with nonlinear friction, a robust friction compensation scheme is presented in this paper. The nonlinear friction is difficult to identify the friction parameters exactly through experiments. Friction parameters can be also varied according to contact conditions such as the variation of temperature and lubrication. Thus, in order to overcome these problems and obtain the desired position tracking performance, a robust adaptive back-stepping control scheme with a dual friction observer is developed. In addition, to estimate lumped friction uncertainty due to modeling errors, a DEKF recurrent neural network and adaptive reconstructed error estimator are also developed. The feasibility of the proposed control scheme is verified through the experiment fur a ball-screw system.

IPMSM 전동기의 비선형 적응 백스텝핑 속도 제어 (Nonlinear and Adaptive Back-Stepping Speed Control of IPMSM)

  • 전용호;조황
    • 한국전자통신학회논문지
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    • 제6권6호
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    • pp.855-864
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    • 2011
  • 본 논문은 IPMSM(Interior Permanent Magnet Synchronous Motor)의 고성능 운전을 위해 비선형 제어를 기반으로 하는 적응 백스텝핑 제어기를 제안한다. 먼저 각속도의 추종성능을 향상시키기 위해서 비선형 백스텝핑 제어기를 설계한다. 파라메타 변동의 영향을 고려하지 않고 설계된 제어기는 고성능 운전이 어렵다. 부하토크의 변동에 대해 실시간 적응할 수 있는 파라메타 추정기를 설계에 포함하여 고성능 운전이 가능하게 한다. 또한 전동기의 효율적인 전력소비를 위하여 최대토크를 얻기 위한 최소전류의 운전을 할 수 있도록 제어기를 설계하였다. 제안된 제어기로 2마력급의 IPMSM에 적용하여 각속도 레퍼런스에 대한 추종성능과 부하토크 변동에 대한 추정, 그리고 MTPA(Maximum Torque per Ampere) 운전을 시험하여 일정토크 운전영역에서 안정화된 강건한 제어기임을 시뮬레이션을 통해 확인할 수 있었다.

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.

Nonlinear Adaptive Control of Fermentation Process in Stirred Tank Bioreactor

  • Kim, Hak-Kyeong;Nguyen, Tan-Tien;Nam soo Jeong;Kim, Sang-Bong
    • Transactions on Control, Automation and Systems Engineering
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    • 제4권4호
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    • pp.277-282
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    • 2002
  • This paper proposes a nonlinear adaptive controller based on back-stepping method for tracking reference substrate concentration by manipulating dilution rate in a continuous baker's yeast cultivating process in stirred tank bioreactor. Control law is obtained from Lyapunov control function to ensure asymptotical stability of the system. The Haldane model for the specific growth rate depending on only substrate concentration is used in this paper. Due to the uncertainty of specific growth rate, it has been modified as a function including the unknown parameter with known bounded values. The substrate concentration in the bioreactor and feed line are measured. The deviation from the reference is observed when the external disturbance such as the change of the feed is introduced to the system. The effectiveness of the proposed controller is shown through simulation results in continuous system.

역보행 제어 형태의 궤환 선형화를 이용한 양방향 플래툰 제어 (Bidirectional Platoon Control Using Backstepping-Like Feedback Linearization)

  • 권지욱
    • 제어로봇시스템학회논문지
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    • 제19권5호
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    • pp.410-415
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    • 2013
  • This paper proposes a bidirectional platoon control law using a coupled distance error based on the backstepping-like feedback linearization control method for an interconnected mobile agent system with a string structure. Unlike the previous results where the single agent was controlled using the only own information without other agents, the proposed control law cannot show the only distance error convergence of each agent, but also the string stability of the whole system. Also, the control performances are improved by the proposed control law in spite of low performance of bidirectional control strategy in the previous results. The proposed bidirectional platoon control algorithm is based on the backstepping-like feedback linearization control method. The position errors between each agent and the preceding and the behind agents are coupled by weighted summation. By the proposed control law, the distance error of each agent can converge to zero while the string stability is guaranteed when the coupled errors can converge to zero. To this end, the back-stepping control method is employed. The pseudo velocity input is determined considering the kinematic relationship between agents and the string stability. Then, the actual dynamic control input is determined to make the actual velocity converge to the pseudo velocity input. The stability analysis and the simulation results of the proposed method are included in order to demonstrate the practical application of the proposed algorithm.

6 자유도 수중로봇 플랫폼의 백스테핑 제어를 위한 제어이득 최적화 (Gain Optimization of a Back-Stepping Controller for 6-Dof Underwater Robotic Platform)

  • 김지훈;김종원;진상록;서태원;김종원
    • 한국정밀공학회지
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    • 제30권10호
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    • pp.1031-1039
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    • 2013
  • This paper presents gain optimization of a 6-DOF underwater robotic platform with 4 rotatable thrusters. To stabilize the 6-DOF motion of the underwater robotic platform, a back-stepping controller is designed with 6 proportional gains and 6 derivative gains. The 12 gains of the backstepping controller are optimized to decrease settling time in step response in 6-DOF motion independently. Stability criterion and overshoots are used as a constraint of the optimization problem. Trust-region algorithm and hybrid Taguchi-Random order Coordinate search algorithm are used to determine the optimal parameters, and the results by two methods are analyzed. Additionally, the resulting controller shows improved performance under disturbances.

Trajectory Controller Design of Mobile Robot based on Back-stepping Procedure

  • Jaewon Kho;Lee, Kicheol;Park, Mignon
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 ITC-CSCC -3
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    • pp.1618-1621
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    • 2002
  • In this paper, the constructive modeling procedure of nonholonomic mobile robot system is carried out with the help of controllability Lie algebra used in differential geometry field, and their geometrical properties are also analyzed. And, a new trajectory controller 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 mobile robot system on the assumption that the trajectory planner be given.

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

  • 이기철;고재원;박민용
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 D
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    • pp.2787-2789
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    • 2000
  • In this paper. the constructive modeling procedure of nonholonomic mobile robot system is carried out with the help of controllability Lie algebra used in differential geometry field. and their geometrical properties are also analyzed. And, a new trajectory controller 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 on the assumption that the trajectory planner be given.

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