• 제목/요약/키워드: Multi-Axis

검색결과 563건 처리시간 0.034초

다축 시뮬레이터의 구동 소프트웨어 개발 및 보정에 관한 연구 (A Study on Operating Software Development and Calibration of Multi-Axis Simulation)

  • 정상화;류신호;신형성;김상석;김종태;박용래
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.141-141
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    • 2000
  • In the recent day, fatigue life prediction techniques play a major role in the design of components in th ground vehicle industry. Full scale durability testing in the laboratory is an essential of any fatigue life evaluation of components or structure of the automotive vehicle. Component testing is particularly important in today's highly competitive industries where the design to reduce weight and production costs must be balanced with the necessity to avoid expensive service failure. Generally, multi-axis durability testing simulator is used to car교 out the fatigue test. In this paper, the operation software for simultaneously driving 3-axis simulator is developed and the real-time signals of input-output data are displayed in window of PC. Moreover, the displacements and the loads of 3-axis actuators are calibrated separately and the operating characteristics of the actuators are evaluated.

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하퇴의지착용자에 대한 인공족관절 유형(고정형, 단축형, 다축형)에 따른 지면반발력 및 에너지 소모의 측정 (Measurement of Ground Reaction Force and Energy Consumption for Ankle Assembly (Fixed-axis , Single-axis , Multi-axis Type) of Trans-Tibial Amputee)

  • 김성민;배하석;박창일
    • 대한의용생체공학회:의공학회지
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    • 제22권6호
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    • pp.543-550
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    • 2001
  • 본 연구에서는 하퇴 절단환자에서 고정형. 단축형, 다축형 인공족관절 장착시 지면반발력과 에너지 소비량을 측정하여 하퇴의지에 대한 생체역학적 평가를 하였다. 실험에는 각각 2명의 남성과 여성 하퇴 절단 환자가 3종류의 의지를 착용하고 참여하였으며. 3차원 보행분석은 7개의 기준점에 대하여 전체 입각기에 대한 지면 반발력의 체중에 대한 비율로 나타내었다. 하퇴의지 에너지 소비량은 피 실험자들이 각각 2km/h, 3km/h 그리고 가장 걷기 편한 속도로 런닝머신 위에서 보행하게 하면서 측정하였다 실험결과는 지면반발력에서 다축형 인공족관절 장착시 추진력과 후진력의 보행특성에 대하여 우위를 보이며, 고정형 인공족관절 장착시에는 보행균형과 무게중심의 이동에 대해 상대적인 우위를 보였다. 에너지 소비량은 2.3km/h 이상의 보행속도에서 단축형 인공족관절 장착시 다른 두 의지에 비해 적은량의 에너지 소비를 보였다.

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선반 및 밀링 겸용 다축 복합가공기의 정밀도 검증을 위한 표준공작물에 대한 연구 (A study on the test workpiece for accuracy analysis of multi-axis turning and milling center)

  • 신재훈;김홍석;윤재웅
    • 한국융합학회논문지
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    • 제9권11호
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    • pp.277-284
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    • 2018
  • 최근 다축 가공을 통한 정밀가공의 수요가 크게 증대되고 있다. 그러나 5축 이상의 다축 공작기계는 기하학적 관계가 복잡하여 공작기계의 기하학적 정밀도 평가와 분석이 어렵다. 본 연구에서는 먼저, 여러 가지 규정으로 분산되어 있는 KS/ISO 규격을 정리하여 다축 공작기계의 기하학적 정밀도 평가 항목을 체계화하였다. 또한, 다축 공작기계의 정밀도를 평가하고 분석하기 위해 표준공작물을 제안하였고, 표준 공작물을 사전에 정해진 방법과 절차에 따라 가공한 후, 가공면을 3차원 측정하여 분석하였다. 그 결과 표준공작물의 가공 결과와 공작기계의 정밀도가 정성적 및 정량적으로 매우 유사함을 확인하였다. 이 결과로부터 다축 공작기계의 정밀도 분석이 표준공작물의 가공만으로 가능함을 확인할 수 있었다.

타원체를 이용한 3축 센서의 실시간 보정 알고리듬 개발 (Development of the Calibration Algorithm of 3 Axis Vector Sensor Using Ellipsoid)

  • 황정문;김정한
    • 한국정밀공학회지
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    • 제32권7호
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    • pp.643-651
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    • 2015
  • Multi-axis magnetic and accelerometer sensor are widely used in consumer product such as smart phones. The vector output of multi-axis sensors have errors on each axis such as offset error, scale error, non-orthogonality. These errors cause many problems on the performance of the applications. In this paper, we designed the effective inline compensation algorithm for calibrating of 3 axis sensors using ellipsoid for mass production of multi-axis sensors. The outputs with those kinds of errors can be modeled by ellipsoid, and the proposed algorithm makes sequential mappings of the virtual ellipsoid to perfect sphere which is calibrated function of the sensor on three-dimensional space. The proposed calibrating process composed of four main stages and is very straightforward and effective. In addition, another imperfection of the sensor such as the drift from temperature can be easily inserted in each mapping stage. Numerical simulation and experimental results shows great performance of the proposed compensation algorithm.

다관절 머니퓰레이터의 사용자 중심 제어기 설계 (User-Oriented Controller Design for Multi-Axis Manipulators)

  • 손현석;강대훈;이장명
    • 대한임베디드공학회논문지
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    • 제3권2호
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    • pp.49-56
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    • 2008
  • This paper proposes a PC-based open architecture controller for a multi-axis robotic manipulator. The designed controller can be applied for various multi-axes robotic manipulators since the motion controller is implemented on a PC with its peripheral devices. The accuracy of the controller based on the computed torque method has been measured with the dynamic model of manipulator. Since the controller is implemented in the PC-based architecture, it is free from the user circumstances and the operating environment. Dynamics of the manipulator have been compensated by the feed forward path in the inner loop and the resulting linear outer loop has been controlled by PD algorithm. Using the specialized language, it can be more efficient in programming and in driving of the multi-axis robot. Unlike the conventional controller that is used to control only a specific robot, this controller can be easily changed for various types of robots. This paper proposes a PC-based controller that has a simple architecture with its simple interface circuits than general commercial controllers. The maintenance and the performance of the controller can be easily improved for a specific robot. In fact, using a Samsung multi-axis robot, AT1, the controller performance and convenience of the PC-based controller have been verified by comparing to the commercial one.

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다축공작기계의 공간오차 예측 및 검증 (Estimation and Evaluation of Volumetric Position Errors for Multi-axis Machine Tools)

  • 황주호;류엔카오;부이바친;박천홍
    • 한국생산제조학회지
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    • 제23권1호
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    • pp.1-6
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    • 2014
  • This paper describes a method of estimating and evaluating the volumetric errors of multi-axis machine tools. The estimation method is based on a generic model that was developed from conventional kinematic error models for the geometric and thermal errors to help predict the volumetric error easily in various configurations. To demonstrate the advantages of the model, an application in the early stages of a five-axis machine tool design is presented as an example. The model was experimentally evaluated for a four-axis machine tool by using the data from ISO230-6 and R-test measurements to compare the estimated and measured volumetric errors.

다축 힘/모멘트센서의 불확도평가 및 응용에 관한 연구 (Uncertainty Evaluation of a Multi-axis Force/Moment Sensor and Its Application)

  • 김갑순
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2001년도 춘계학술대회 논문집
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    • pp.177-180
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    • 2001
  • This paper describes the calibration method and the evaluation method of relative expanded uncertainty for a multi-axis force/moment sensor. This sensor should be calibrated to be use in the industry. Now, the confidence of the calibration result is expressed with interference error. But it is no inaccurate, because an interference error, besides, a reproducibility error of the sensor, a error of this six-axis force/moment sensor calibrator, and so on. Thus, in order to accurately evaluate the relative expanded uncertainty of it, the concept of the uncertainty should be induced, and these errors must be contained in the relative expanded uncertainty. In this paper, the calibration method is exhibited and the evaluation method of the relative expanded uncertainty is also exhibited. And, a six-axis force/moment sensor was calibrated and the relative expanded uncertainty was evaluated.

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