• 제목/요약/키워드: Magnetic Encoder

검색결과 57건 처리시간 0.032초

Hall Probe를 이용한 초전도선재의 비접촉 임계전류 측정 방법 (Non-contact critical current measurement of superconducting coated conductor using Hall Probe)

  • 김호섭;오상수;이남진;하동우;백승규;고락길;하홍수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 춘계학술대회 논문집
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    • pp.12-12
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    • 2010
  • The hall probe measurement system was used to measure the critical current distribution of superconducting coated conductor. The system consists of reel to reel moving apparatus, 7 array hall probe, a rotary encoder and permanent magnet. The magnetic field profile across the width of superconducting coated conductor using Bean's critical state model was calculated. The effect of various parameters of the formulas on the magnetic field distribution and the effect of shape and size of artificial defects, which were formed on the surface of SmBa2Cu3O7-d(SmBCO) coated conductor using laser marking system, on the hall probe magnetic field signal of the hall probe measurement system was investigated.

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자석식 자동 파이프 절단기를 위한 신뢰성 있는 제어기 개발 (The Reliable Controller Design for Magnetic Auto-Pipe Cutting Machine)

  • 김국환;이명철;이순걸
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.1019-1022
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    • 2002
  • Pipe-cutting machines have been used in many fields. Recently, an automatic pipe-cutting machine that uses magnet has born developed. In this paper, a magnetic-type automatic pipe-cutting machine that attaches itself and performs unmanned cutting process is proposed. It is designed that there is a room at the bottom of its body to contain a magnet. And it uses magnetic force between the magnet and the pipe surface to prevent slip and to attach the machine to the pipe against gravity. Also the magnetic force is adjustable by changing the gap between the magnet and the pipe. This machine is, however, necessary to control cutting velocity for the elevation of work efficiency and the adjustable faculties. During pipe cutting process, the gravity acting on the pipe-cutting machine widely varies. That is, the cutting machine gets fast when moving from the top to the bottom of the pipe and slow when moving from the bottom to the top. Actually the system is kind of a non-linear system where the gravity is function of climbing angle of the cutting machine along the pipe. Especially jerking motion is critical. Therefore, authors design the non-linear controller that estimates the current position of the machine along the pipe and compensates the effect of gravity in this paper. It receives the feed back signal from the encoder.

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자극센서 없는 영구자석 동기전동기의 초기 자극위치 추정 (Initial Pole Position Estimation of a Magnetic Pole Sensorless Permanent Magnet Synchronous Motor)

  • 이진우
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2003년도 추계학술대회 논문집
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    • pp.127-131
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    • 2003
  • This paper describes an initial pole position estimation method of a magnetic pole sensorless permanent magnet synchronous motor(PMSM) with an incremental encoder, The accurate initial pole position is estimated by using an efficient numerical method of Secant Method, which finds either of two zero torque/force positions and then the correct d-axis. It can be simply applicable to both rotary and linear PMSM because it only requires the tuned current controller and the relative position information. The experimental results show the validity of the proposed method with respect to highly accurate pole position estimation under the moderate moving distance and convergence time.

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자석식 자동 파이프 절단기의 정속제어와 MEMS 형 가속도계를 이용한 미끄럼 측정 (Velocity Control of Magnet-Type Automatic Pipe Cutting Machine and Measurement of Slipping Using MEMS-Type Accelerometer)

  • 김국환;이성환;임성수;이순걸
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2004년도 추계학술대회 논문집
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    • pp.475-478
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    • 2004
  • In this paper, a magnet-type automatic pipe cutting machine that binds itself to the surface of the pipe using magnetic force and executes unmanned cutting process is proposed. During pipe cutting process when the machine moves around the pipe laid vertical to the gravitational field, the gravity acting on the pipe cutting machine widely varies as the position of the machine varies. That is, with same driving force from the driving motor the cutting machine moves faster when it climbs down the surface of the pipe and moves slower when it climbs up to the top of the pipe. To maintain a constant velocity of the pipe cutting machine and improve the cutting quality, the authors adopted a conventional PID controller with a feedforward effort designed based on the encoder measurement of the driving motor. It is, however, impossible for the encoder at the motor to measure the absolute position and consequently the absolute velocity of the cutting machine in the case where the slip between the surface of the pipe and wheel of the cutting machine is not negligible. As an attempt to obtain a better estimation of the absolution angular position/velocity of the machine the authors proposes the use of the MEMS-type accelerometer which can measure static acceleration as well as dynamic acceleration. The estimated angular velocity of the cutting machine using the MEMS-type accelerometer measurement is experimentally obtained and it indicates the significant slipping of the machine during the cutting process.

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원형레일 기반 지상 SAR 시스템에서의 안테나 위치 정밀 제어 기술 재발 (Precise Control of Antenna Position in Arc-Rail Based GB-SAR System)

  • 김광은;조성준;성낙훈;이재희;강문경
    • 대한원격탐사학회지
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    • 제27권1호
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    • pp.25-31
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    • 2011
  • 원형레일을 기반으로 하는 지상 SAR 시스템인 ArcSAR 시스템에서 간섭(interferometry)기법의 적용이 가능한 정밀한 지상 SAR 영상을 획득하기 위해서는 안테나 위치의 정밀한 제어가 요구된다. 본 연구에서는 자력 선형 스케일(Magnetic Linear Scale)을 이용하여 기존 ArcSAR 시스템에서의 안테나 위치 값의 정확도를 분석하였으며 자력 엔코더(Encoder) 값을 이용하여 안테나 위치를 정밀하게 제어할 수 있는 기술을 개발하였다. 기존의 ArcSAR 시스템의 제어 체계에서는 안테나 회전 각도에 대한 평균 RMS 오차가 $0.043^{\circ}$였으나, 본 기술을 통해 $0.006^{\circ}$로 감소시킬 수 있었다. 이는 3미터 길이의 arm을 기준으로 할 때, 안테나 위치 정확도에 대한 평균 RMS 오차가 2.262mm에서 0.324mm로 감소된 것에 해당한다. 본 기술을 통해 매우 정밀한 지상 SAR 영상자료의 획득이 가능하게 되었으며 향후 간섭기법의 적용을 통해 지반 및 대형 구조물의 미세변위에 대한 초정밀 모니터링에 활용될 수 있을 것으로 기대된다.

3D 오토인코더 기반의 뇌 자기공명영상에서 다발성 경화증 병변 검출 (Multiple Sclerosis Lesion Detection using 3D Autoencoder in Brain Magnetic Resonance Images)

  • 최원준;박성수;김윤수;감진규
    • 한국멀티미디어학회논문지
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    • 제24권8호
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    • pp.979-987
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    • 2021
  • Multiple Sclerosis (MS) can be early diagnosed by detecting lesions in brain magnetic resonance images (MRI). Unsupervised anomaly detection methods based on autoencoder have been recently proposed for automated detection of MS lesions. However, these autoencoder-based methods were developed only for 2D images (e.g. 2D cross-sectional slices) of MRI, so do not utilize the full 3D information of MRI. In this paper, therefore, we propose a novel 3D autoencoder-based framework for detection of the lesion volume of MS in MRI. We first define a 3D convolutional neural network (CNN) for full MRI volumes, and build each encoder and decoder layer of the 3D autoencoder based on 3D CNN. We also add a skip connection between the encoder and decoder layer for effective data reconstruction. In the experimental results, we compare the 3D autoencoder-based method with the 2D autoencoder models using the training datasets of 80 healthy subjects from the Human Connectome Project (HCP) and the testing datasets of 25 MS patients from the Longitudinal multiple sclerosis lesion segmentation challenge, and show that the proposed method achieves superior performance in prediction of MS lesion by up to 15%.

융합 센서 네트워크 정보로 보정된 관성항법센서를 이용한 추측항법의 위치추정 향상에 관한 연구 (Study on the Localization Improvement of the Dead Reckoning using the INS Calibrated by the Fusion Sensor Network Information)

  • 최재영;김성관
    • 제어로봇시스템학회논문지
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    • 제18권8호
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    • pp.744-749
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    • 2012
  • In this paper, we suggest that how to improve an accuracy of mobile robot's localization by using the sensor network information which fuses the machine vision camera, encoder and IMU sensor. The heading value of IMU sensor is measured using terrestrial magnetism sensor which is based on magnetic field. However, this sensor is constantly affected by its surrounding environment. So, we isolated template of ceiling using vision camera to increase the sensor's accuracy when we use IMU sensor; we measured the angles by pattern matching algorithm; and to calibrate IMU sensor, we compared the obtained values with IMU sensor values and the offset value. The values that were used to obtain information on the robot's position which were of Encoder, IMU sensor, angle sensor of vision camera are transferred to the Host PC by wireless network. Then, the Host PC estimates the location of robot using all these values. As a result, we were able to get more accurate information on estimated positions than when using IMU sensor calibration solely.

반복학습제어기를 이용한 자석식 자동 파이프 절단 로봇의 제어 (Control of Automatic Pipe Cutting Robot with Magnet Binder Using Learning Controller)

  • 이성환;김국환;임성수;이순걸
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.541-546
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    • 2005
  • Tracking control of an automatic pipe cutting robot (APCROMB) is studied. Using magnetic force APCROMB, which is designed and developed in Kyung Hee University, binds itself to the pipe and executes unmanned cutting process. The gravity effect on the movement of APCROMB varies as it rotates around the cylindrical pipe laid in the gravitational field. To maintain a constant velocity and consistent cutting performance against the varying gravitational effect, the authors adopt a multi-rate repetitive learning controller (MRLC), which learns the required effort to cancel the repetitive tracking errors caused by nonlinear effect. In addition to the varying gravity effect other types of nonlinear disturbances including backlash in the driving system and the slip between the wheels of APCROMB and the pipe also cause degradation in the cutting process. In order to identify those nonlinear disturbances the position estimation based on the encoder attached at the motor is not good enough. To identify the absolute angular position of APCROMB the authors propose the angular position estimation based on the signals from a MEMS-type two-axis accelerometer mounted on APCROMB. The tracking performances of APCROMB with a MRLC using the encoder-based position estimation is experimentally measured and results are shown. Also the difference between the encoder-based angular displacement measurement and the accelerometerbased angular displacement measurement is included.

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엔코더리스 마그넷 모션을 이용한 위치제어에 대한 리니어모터 실험적 연구 (Experimental Study on Position Control System Using Encoderless Magnetic Motion)

  • 김홍윤;윤영민;심호근;권영목;허훈
    • 대한기계학회논문집A
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    • 제40권1호
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    • pp.9-16
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    • 2016
  • 영구자석 선형 동기전동기(PMLSM : Permanent Magnet Linear Synchronous Motor)의 구조에서, 영구자석이 레일에 고정되고 코일이 움직이는 기존 영구자석 선형 동기전동기와 달리(영구자석 = 고정자, 코일 = 이동자), 코일이 고정되고, 영구자석을 움직이는(영구자석 = 이동자, 코일 = 고정자) 구조의 위치제어시스템을 제안하고자 한다. 위치 측정은 2개의 홀센서를 사용한다. 이 방식은 엔코더 출력 펄스 신호 대신에 2개의 홀센서에서 발생되는 구형파 신호를 4체배하여 이동자의 속도와 위치를 추정한다. 구형파를 발생시키는 2개의 홀센서로 PMLSM의 벡터제어를 구현하였을 때 정격속도 범위 내에서 안정적이고 효율적으로 제어되는 것을 시뮬레이션을 통하여 입증하였다. 또 하드웨어 실험으로 시스템의 위치제어성능은 $30{\sim}50{\mu}m$의 측정범위 내에서 $10{\sim}20{\mu}m$의 정밀도로 기존시스템보다 2배나 개선되며, 경제적 효율성과 제안된 위치제어 개념의 실용적인 유용성도 확인하였다. 2개의 홀센서를 이용한 벡터제어는 협소한 공간에도 취부 할 수 있으므로 엔코더나 레졸버의 장착이 어려운 시스템에 적용될 수 있다.

경사도로에서 다중 센서를 이용한 이동로봇의 위치추정 성능 개선 (Localization Performance Improvement for Mobile Robot using Multiple Sensors in Slope Road)

  • 김지용;이지홍;변재민;김성훈
    • 전자공학회논문지SC
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    • 제47권1호
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    • pp.67-75
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    • 2010
  • 본 논문에서는 실외환경에서 주행하는 이동로봇의 위치를 추정하는 알고리즘을 제안한다. 실외환경은 실내와 다르게 바닥이 고르지 않고, 경사진 지형 등 지면에 대한 불확실성을 포함한다. 이러한 환경에서 로봇의 진행 방향을 추정하기 위해 magnetic 센서 또는 IMU(Inertial Measurement Unit)가 예전부터 많이 사용되어 왔다. Magnetic 센서는 진행방향에 대한 절대 각도를 알려주며, IMU는 센서 내부에서 자이로스코프와 가속도계, 전자 나침반을 사용하여 각도 정보를 제공한다. 하지만 본 연구에 사용된 이동로봇은 전기자동차로써 자기장의 영향을 많이 받기 때문에 위 두 센서를 사용할 수가 없는 실정이다. 그래서 자기장의 영향을 받지 않는 1축 자이로 센서 3개를 이용한 자이로 모듈을 구성하여 진행방향을 추정하는 알고리즘을 구현하였다. GPS와 엔코더, 자이로 센서 모듈 등을 통해 얻은 정보를 융합하여 확장 칼만 필터 알고리즘에 의한 이동로봇의 위치추정 알고리즘을 개발하였고 실험을 통하여 제안한 알고리즘의 성능을 검증하였다.