• 제목/요약/키워드: High-Precision Control

검색결과 1,290건 처리시간 0.038초

공작기계의 서보제어와 입력성형기법 (Input Shaping for Servo Control of Machine Tools)

  • 김병섭
    • 한국정밀공학회지
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    • 제28권9호
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    • pp.1011-1017
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    • 2011
  • Servo control loops are a core part in the control architecture of machine tools. Servo control loops manage acceleration, velocity and position of all the axes in a machine tool based on commands. The performance of servo control loops sets the basis for quality of production paris and cycle time reduction. First, this paper presents a general control architecture of machine tools and several control schemes in literature, which can be applicable to machine tools control; including Zero Phase Error Tracking Control (ZPETC) and Cross Coupling Control (CCC). After that, modem control strategies to mitigate the problem of high speed machining are reviewed. In high speed machining, high accelerations excite the machine structure up to high frequencies, thereby exciting the structure's modes of vibration. These structural vibrations need to be damped if accurate positioning or trajectory following is required. Input shaping is an attractive option in dealing with structural vibrations. The advantages and drawbacks of using input shaping technique for machine tools are discussed in detail.

자동화 장비의 고속 정밀제어를 위한 혼합형 퍼지 제어기 (Hybrid Fuzzy Controller for High Speed and High Precision Control of Auto-Equipments)

  • 조정환
    • 조명전기설비학회논문지
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    • 제15권5호
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    • pp.90-96
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    • 2001
  • 외란이나 시스템의 파라미터 변동 및 불확실성이 존재하는 자동화 장비의 고속 정밀제어를 위한 혼합형 퍼지제어 시스템을 제안한다. 제안된 시스템은 제어영역을 고속제어 영역과 정밀제어 영역으로 분리하였다. 먼저 퍼지 제어방식을 이용하여 고속제어를 수행하고, 오차가 설정된 범위 안에 들어오면 주파수 동기방식에 의해 제어되어 정밀제어를 수행한다. 제안된 방법을 이용하여 용접라인 및 산업용 로봇 매니플레이터, 부품조립 자동화 설비 등의 적용 예로써 서보 제어시스템에 적용하였다. 이론과 실험적인 연구가 수행되었고, 그 결과는 자동화 장비의 위치제어 성능이 개선되었음을 입증한다.

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고속 세틀링과 고정밀 위치 제어를 위한 모드 변경 제어 기법 (A New Mode Switching Control for Fast Settling and High Precision Positioning)

  • 김정재;최영만;김기현;권대갑;홍동표
    • 반도체디스플레이기술학회지
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    • 제5권4호
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    • pp.1-4
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    • 2006
  • Recently, with rapid development of digital media like semiconductor and large flat panel display, the manufacturing equipment is required to have high precision over large travel range. Moreover it should have high product throughput. To achieve high product throughput, a controller should perform fast point-to-point motion and high precision positioning after settling in spite of external disturbances or residual vibrations. We proposed a new mode switching control algorithm with an application to dual stage for long range and high precision positioning. The proposed algorithm uses a proximate time-optimal servomechanism for the fast settling and a time-delay controller for the high precision positioning. Experimental results show that the proposed method enables smooth mode switching and improves the settling time and the precision accuracy after settling by over than 33% and 45%, respectively.

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Modeling and Multivariable Control of a Novel Multi-Dimensional Levitated Stage with High Precision

  • Hu Tiejun;Kim Won-jong
    • International Journal of Control, Automation, and Systems
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    • 제4권1호
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    • pp.1-9
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    • 2006
  • This paper presents the modeling and multivariable feedback control of a novel high-precision multi-dimensional positioning stage. This integrated 6-degree-of-freedom. (DOF) motion stage is levitated by three aerostatic bearings and actuated by 3 three-phase synchronous permanent-magnet planar motors (SPMPMs). It can generate all 6-DOF motions with only a single moving part. With the DQ decomposition theory, this positioning stage is modeled as a multi-input multi-output (MIMO) electromechanical system with six inputs (currents) and six outputs (displacements). To achieve high-precision positioning capability, discrete-time integrator-augmented linear-quadratic-regulator (LQR) and reduced-order linearquadratic-Gaussian (LQG) control methodologies are applied. Digital multivariable controllers are designed and implemented on the positioning system, and experimental results are also presented in this paper to demonstrate the stage's dynamic performance.

반복 제어법을 이용한 정밀 제어

  • 전도영
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 춘계학술대회 논문집
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    • pp.461-465
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    • 1996
  • In servo systems such as the computer hard disk, surface mountiong device and robot manipulators, the high precision and high speed are increasingly demanding. In these examples, the repeatable errors exist and the repetitive controller removes these errors effectively by adding signals calculated from the previous cycle errors to the existing feedback controller. The experimental results of the position tracking control and contact force control show that the repetitive control effectively improves the precision of mechanical servo systems.

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High-Precision Contour Control by Gaussian Neural Network Controller for Industrial Articulated Robot Arm with Uncertainties

  • Zhang, Tao;Nakamura, Masatoshi
    • Transactions on Control, Automation and Systems Engineering
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    • 제3권4호
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    • pp.272-282
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    • 2001
  • Uncertainties are the main reasons of deterioration of contour control of industrial articulated robot arm. In this paper, a high-precision contour control method was proposed to overcome some main uncertainties, such as torque saturation, system delay dynamics, interference between robot links, friction, and so on. Firstly, each considered factor of uncertainties was introduced briefly. Then proper realizable objective trajectory generation was presented to avoid torque saturation from objective trajectory. According to the model of industrial articulated robot arm, construction of Gaussian neural network controller with considering system delay dynamic, interference between robot links and friction was explained in detail. Finally, through the experiment and simulation, the effectiveness of proposed method was verified. Furthermore, based on the results it was shown that the Gaussian neural network controller can be also adapted for the various kinds of friction and high-speed motion of industrial articulated robot arm.

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Feedrate Control에 의한 초경코어 표면조도 향상에 관한 연구 (A Study on Improvement of WC Core Surface Roughness by Feedrate Control)

  • 김현욱;정상화;이동길;김상석;김혜정;김정호
    • 한국정밀공학회지
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    • 제26권1호
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    • pp.57-62
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    • 2009
  • Recently, with the increasing lightness and miniaturization of high resolution camera phones, the demand for aspheric glass lens has increased because plastic and spherical lens are unable to satisfy the required performance. An aspheric glass lens is fabricated by the high temperature and pressure molding using a tungsten carbide molding core, so precision grinding technology for the molding core surface are required. This paper reports a development of feedrate control grinding method for aspherical molding core using parallel grinding method. A plane molding core was ground using conventional and feedrate control grinding method. The performance of the feedrate control method was evaluated by measurement of surface roughness. The result indicated that the average surface roughness was reduced to 1.5 nm, which is more efficient than the conventional grinding method.

로봇의 비선형 적응제어기 개발에 관한 연구 (Nonlinear Adaptive Controller for Robot Manipulator)

  • 박태욱
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 춘계학술대회 논문집
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    • pp.419-423
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    • 1996
  • These days, industrial robots are required to have high speed and high precision in doing various tasks. Recently, the adaptive control algorithms for those nonlinear robots have been developed. With spatial vector space, these adaptive algorithms including recursive implementation are simply described. Without sensing joint acceleration and computing the inversion of inertia matrix, these algorithms which include P.D. terms and feedforward terms have global tracking convergence. In this paper, the feasibility of the proposed control method is illustrated by applying to 2 DOF SCARA robot in DSP(Digital Signal Processing).

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고정밀 체결토크 성능 너트런너 시스템 개발 (Development of High Precision Fastening torque performance Nut-runner System)

  • 김윤현;김솔
    • 한국산학기술학회논문지
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    • 제20권4호
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    • pp.35-42
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    • 2019
  • 현재 자동차 산업과 함께 발전하고 있는 전자제품을 포함하는 전반적인 제조업 분야에서 초정밀 제어를 요하는 너트 체결기가 요구되고 있고 너트 체결시의 중요한 성능 요소는 체결력 부족에 의한 풀림과 과도한 체결에 의한 파손 및 강한 진동이나 외부 충격에 강건한 체결력 유지 등 조립 품질의 유지와 향상 및 제품 수명 보장을 위해 정확한 조임 토크, 각도 등이 요구된다. 현재 너트런너라는 제품명으로 판매되는 너트 체결기는 고토크 및 정밀토크제어, 정밀 각도제어 그리고 생산량 증대를 위한 고속운전 등의 특성들이 필요하며 고출력이 가능한 BLDC모터 및 너트체결기 전용의 정교한 토크제어에 필요한 고정밀 토크제어드라이버와 고속, 저속, 고응답의 정밀 속도 제어시스템의 개발이 요청되고 있으나 현재 고객이 요구하는 고정밀, 고토크 및 고속 작업특성을 만족시키지 못하고 있다. 따라서 본 논문에서는 정확한 체결 토크 및 고속 회전에서도 저진동 및 저소음을 구현할 수 있는 d축, q축의 좌표변환에 의한 벡터제어와 토크제어기반의 BLDC모터 가변속 제어와 너트런너의 제어 기술을 제안하고 여러 실험을 통해 성능 결과를 분석하여 제안한 제어가 너트런너 성능을 만족하는지를 확인 하였다. 또한 일단 운전 체결 방식(One Stage 운전 체결 방식)으로 패턴을 프로그램하여 10,000[rpm] 고속 운전 후 목표 토크로 정확히 체결됨을 확인하였으며 토크 리플에 의한 가체결 토크 검출의 문제점도 외란관측기을 사용하여 해결하였고 실험을 통해 검증하였다.