• 제목/요약/키워드: Force Feedback Control

검색결과 417건 처리시간 0.027초

ER 유체를 이용한 햅틱 마스터와 가상 MIS 환경의 연동제어 (Force-Feedback Control of an Electrorheological Haptic Device in MIS Virtual Environment)

  • 강필순;한영민;최승복
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 추계학술대회논문집
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    • pp.422-427
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    • 2006
  • This paper presents force-feedback control performance of a haptic device in virtual environment of minimally invasive surgery(MIS). As a first step, based on an electrorheological(ER) fluid and spherical geometry, a new type of master device is developed and integrated with a virtual environment of MIS such as a surgical tool and human organ. The virtual object is then mathematically formulated by adopting the shape retaining chain linked(S-Chain) model. After evaluating reflection force, computational time, and compatibility with real time control, the virtual environment of MIS is formulated by interactivity with the ER haptic device in real space. Tracking control performances for virtual force trajectory are presented in time domain, and theirtrackingerrorsareevaluated.

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전기유변 유체를 이용한 햅틱 마스터와 가상의 최소침습수술 환경과의 연동제어 (Force-feedback Control of an Electrorheological Haptic Device in MIS Virtual Environment)

  • 강필순;한영민;최승복
    • 한국소음진동공학회논문집
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    • 제16권12호
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    • pp.1286-1293
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    • 2006
  • This paper presents force-feedback control performance of a haptic device in virtual environment of minimally invasive surgery(MIS). As a first step, based on an electrorheological (ER) fluid and spherical geometry, a new type of master device is developed and integrated with a virtual environment of MIS such as a surgical tool and human organ. The virtual object is then mathematically formulated by adopting the shape retaining chain linked(S-chain) model. After evaluating reflection force, computational time, and compatibility with real time control, the virtual environment of MIS is formulated by interactivity with the ER haptic device in real space. Tracking control performances for virtual force trajectory are presented in time domain.

Feedback control design for intelligent structures with closely-spaced eigenvalues

  • Cao, Zongjie;Lei, Zhongxiang
    • Structural Engineering and Mechanics
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    • 제52권5호
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    • pp.903-918
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    • 2014
  • Large space structures may have resonant low eigenvalues and often these appear with closely-spaced natural frequencies. Owing to the coupling among modes with closely-spaced natural frequencies, each eigenvector corresponding to closely-spaced eigenvalues is ill-conditioned that may cause structural instability. The subspace to an invariant subspace corresponding to closely-spaced eigenvalues is well-conditioned, so a method is presented to design the feedback control law of intelligent structures with closely-spaced eigenvalues in this paper. The main steps are as follows: firstly, the system with closely-spaced eigenvalues is transformed into that with repeated eigenvalues by the spectral decomposition method; secondly, the computation for the linear combination of eigenvectors corresponding to repeated eigenvalues is obtained; thirdly, the feedback control law is designed on the basis of the system with repeated eigenvalues; fourthly, the system with closely-spaced eigenvalues is regarded as perturbed system on the basis of the system with repeated eigenvalues; finally, the feedback control law is applied to the original system, the first order perturbations of eigenvalues are discussed when the parameter modifications of the system are introduced. Numerical examples are given to demonstrate the application of the present method.

로봇 매니퓰레이터의 힘제어를 위한 퍼지 학습제어에 관한 연구 (A Study on the Fuzzy Learning Control for Force Control of Robot Manipulators)

  • 황용연
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권5호
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    • pp.581-588
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    • 2002
  • A fuzzy learning control algorithm is proposed in this paper. In this method, two fuzzy controllers are used as a feedback and a feedforward type. The fuzzy feedback controller can be designed using simple knowledge for the controlled system. On the other hand, the fuzzy feedforward controller has a self-organizing mechanism and therefore, it does not need any knowledge in advance. The effectiveness of the proposed algorithm is demonstrated by experiment on the position and force control problem of a parallelogram type robot manipulator with two degrees of freedom. It is shown that the rapid learning and the robustness can be achieved by adopting the proposed method.

In-Process Cutter Runout Compensation Using Repetitive Learning Control

  • Joon Hwang;Chung, Eui-Sik
    • International Journal of Precision Engineering and Manufacturing
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    • 제4권4호
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    • pp.13-18
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    • 2003
  • This paper presents the in-process compensation to control cutter ronout and to improve the machined surface quality. Cutter ronout compensation system consists of the micro-positioning servo system with piezoelectric actuator which is embeded in the sliding table to manipulate radial depth of cut in real-time. Cutting force feedback control was proposed in the angle domain based upon repetitive learning control strategy to eliminate chip load variation in end milling process. Micro-positioning control due to adaptive actuation force response improves the machined surface quality by cutter ronout compensation.

수동 Compliance가 능동적 Compliance제어의 안정도에 미치는 영향 (A Stability Effect of Passive Compliance on Active Compliance Control)

  • Chung, Tae-Sang
    • 대한전기학회논문지
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    • 제39권1호
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    • pp.92-106
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    • 1990
  • Active compliance is often used in the control of robot manipulators for the implementation of complex tasks such as assembly, multi-finger fine motion, legged-vehicle adaptive control,etc. This technique balances the interactive force between the manipulator tip and its working environment with its position and velocity errors to achieve the operation of a damped spring. This paper investigates the effecft of passive compliance on system stability with regard to force feedback implementation for actively compliant motion. Usually it is understood that accurate position control require a stiff system. However, theoretical examination of control experiments on a legged suspension vehicle suggests that, if the control includes discrete-time force feedback, some passive compliance is necessssary at the legs of the vehicle for system stability. This can be an important factor to bl considered in manipulator design and control. A theoretical analysis, numerical simulation, and experimental result, confirming the above conclusion, are introduced in this paper.

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신경 회로망을 이용한 로보트 매니퓰레이터의 Hybrid 위치/힘 제어기의 설계 (Hybrid position/force controller design of the robot manipulator using neural network)

  • 조현찬;전홍태;이홍기
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1990년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 26-27 Oct. 1990
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    • pp.24-29
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    • 1990
  • In this paper ,ie propose a hybrid position/force controller of a robot manipulator using double-layer neural network. Each layer is constructed from inverse dynamics and Jacobian transpose matrix, respectively. The weighting value of each neuron is trained by using a feedback force as an error signal. If the neural networks are sufficiently trained it does not require the feedback-loop with error signals. The effectiveness of the proposed hybrid position/force controller is demonstrated by computer simulation using a PUMA 560 manipulator.

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적용 퍼지 슬라이딩 모드 제어를 이용한 힘 궤환 제어 (Force Feedback Control using Adaptive Fuzzy Sliding Mode Control)

  • 서삼준;서호준;김동식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2002년도 하계학술대회 논문집 D
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    • pp.2525-2527
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    • 2002
  • The objective of this paper is to design a force feedback controller for bilateral control of a master-slave manipulator system using adaptive fuzzy sliding mode control. In a bilateral control system, the motion of the master device is followed by slave the one. While the force applied to the slave is reflected on the master. In this paper a proposed controller applied to the system. Adding a switching control term to the input robustness is improved. Also the knowledge of the system dynamics is not needed. The computer simulation results show the performance of the proposed adaptive fuzzy sliding mode controller.

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무인차량 원격주행제어 신뢰성 향상을 위한 통합 시뮬레이터 구축에 관한 연구 (A Study on the Development of Driving Simulator for Improvement of Unmanned Vehicle Remote Control)

  • 강태완;박기홍;김준원;김재관;박현철;강창근
    • 한국산학기술학회논문지
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    • 제20권6호
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    • pp.86-94
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    • 2019
  • 본 논문은 보다 높은 실재감과 안전성을 확보하기 위한 무인차량 원격주행제어 환경 개발에 대한 내용을 설명한다. 주로 무인차량 원격주행제어를 위한 환경은 조이스틱 형태의 장치를 활용하여 조향과 가/감속이 가능하도록 개발되어 사용되었다. 그 외 일반 차량처럼 간이 조향-휠(steering-wheel)을 기반으로 개발된 시뮬레이터 환경도 있으나, 현재 주행 상황을 피드백하는 기술이 적용되어 있지 않거나 가/감속부를 포함하지 않는 것이 대부분이다. 피드백 기술이란 일반 차량을 직접 운전할 때 조향-휠과 가/감속 페달을 통해 느껴지는 현재 주행 상황을 시뮬레이터 환경에 구현하는 것을 의미한다. 이렇듯 무인차량 원격주행제어에 이질감을 감소시키는 피드백 기술 개발과 더불어 실재감을 높일 수 있는 시뮬레이터 환경 구축이 필수적이다. 따라서 본 연구에서는 선행 연구를 통해 개발된 힘반향 햅틱제어 기술을 적용할 수 있는 시뮬레이터 환경을 구축하고 시뮬레이터 하드웨어의 최소 요구사양을 도출하는 연구를 수행하였다. 하드웨어 구성은 일반 차량과 유사한 조향-휠 모듈과 가/감속 페달 모듈로 구성하였으며, 조향부와 가/감속부 모두 피드백 기술을 적용할 수 있도록 별도의 액추에이터를 설치하였다. 또한 제어부 PC를 통해 두 가지 조작부에 피드백 명령을 전달할 수 있도록 CAN(controller area network) 통신 환경을 구성하였다. 이렇게 구성한 시뮬레이터 환경의 성능을 검증하기 위하여 기 개발된 힘반향 햅틱제어 알고리즘을 직접 적용하여 각 상황 별 알고리즘 동작을 평가하였다.