• 제목/요약/키워드: low magnetic field measurement

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극저주파 자계 세기를 원격 측정하는 장치 (Telemetering System of Extremely Low Frequency Magnetic Field Intensity)

  • 유호상;왕종욱;서근미;김윤명
    • 한국전자파학회논문지
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    • 제18권5호
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    • pp.553-562
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    • 2007
  • 본 논문에서는 극저주파 자계 세기를 원격으로 측정하기 위한 장치를 설계하고 제작하였다. 자계 측정기는 자계를 등방적으로 측정하기 위하여 3축 자계 센서를 사용하였으며, 측정 대역내 주파수에서 주파수 특성을 보상하기 위하여 등화기를 사용하였다. 3축 자계 센서의 출력 신호를 시간적으로 다중화 시켜, 3축간 균일한 이득 및 주파수 특성을 얻었다. 자계 측정 레벨 범위는 $0.01{\sim}10.0\;uT$이며, 측정 주파수 대역은 $40{\sim}180\;Hz$이 되도록 설계하였다. 제어 시스템은 무선으로 자계 측정기에 접근하며, 최대 접근 거리는 1.0 km이다. 제작된 장치의 측정 레벨 오차는 5% 이내이다. 제작된 장치는 고전압 송전선이 지나는 골프 연습장에 설치되었다.

전기철도 차량에 대한 극저주파 자계영역의 시간영역 측정 및 스펙트럼 분석 (Time-domain measurement and spectral analysis of low frequency magnetic field on board of rolling stock)

  • 장동욱;정상기
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 추계학술대회 논문집
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    • pp.263-268
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    • 2008
  • The measurement of magnetic field is performed AC magnetic field emission density in driver cab and saloon's compartment of rolling stock. In order to measure magnetic-field emission, a three-axial magnetic-field sensor is used and connected to data process system. The AC magnetic field is checked and analysis through BNC output, DAQ cad and notebook PC. The spectral analysis is performed by short time Fourier transform(STFT) for time-domain emission signal.

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극저주파 디지털 자계 측정기의 설계 및 구현 (Design and Implementation of ELF Digital Magnetic Fields Meter)

  • 임재유;황정환;김원호
    • 한국위성정보통신학회논문지
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    • 제10권3호
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    • pp.84-88
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    • 2015
  • 본 논문은 극저주파 자계 세기를 무선 모니터링하기 위한 디지털 자계측정기의 설계 및 구현에 대해 기술한다. 우리 실생활에 극 저주파대역의 자기장이 노출되어 있어 인체에 자기장이 얼마나 영향을 미치는가에 대한 연구의 필요성이 있으며 그에 따른 측정 장비의 수요가 증가하고 있다. 본 논문에서는 3-축 코일형 자계센서를 사용하였으며, 자계의 측정 범위는 0.03~10uT, 주파수 범위는 40~180Hz이다. 자계 세기의 측정과 주파수 특성을 보상하는 등화기능은 DSP 기반의 디지털 방식으로 설계하였으며, 측정 값은 와이파이 통신을 이용하여 PC 모니터링 할 수 있도록 설계 및 구현하였고 측정오차는 6% 이내로 실용성을 확인하였다.

So, You Need Reliable Magnetic Measurements You Can Use With Confidence? How the Magnetic Measurement Capabilities at NPL Can Help

  • Hall, Michael;Harmon, Stuart;Thomas, Owen
    • Journal of Magnetics
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    • 제18권3호
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    • pp.339-341
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    • 2013
  • The magnetic field standards, facilities and capabilities available at NPL for the calibration of magnetometers and gradiometers and the measurement of the magnetic properties of materials will be introduced. The details of the low magnetic field facility will be explained and the capabilities this facility enables for the characterisation and calibration of ultra-sensitive room temperature magnetic sensors will be presented. Building on core material capabilities that are compliant with the IEC 60404 series of written standards, the example of a standard permeameter that has been modified for the measurement of strips for real world conditions is discussed. This was incorporated into a stress machine to measure the DC properties of the soft magnetic materials used by the partners of a collaborative industry led R&D project at stress levels of up to 700 MPa. The results for three materials are presented and the changes in the properties with applied stress compared to establish which material exhibits favourable properties.

The latest trend in magnetocardiogram measurement system technology

  • Lee, Y.H.;Kwon, H.;Kim, J.M.;Yu, K.K.
    • 한국초전도ㆍ저온공학회논문지
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    • 제22권4호
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    • pp.1-5
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    • 2020
  • Heart consists of myocardium cells and the electrophysiological activity of the cells generate magnetic fields. By measuring this magnetic field, magnetocardiogram (MCG), functional diagnosis of the heart diseases is possible. Since the strength of the MCG signals is weak, typically in the range of 1-10 pT, we need sensitive magnetic sensors. Conventionally, superconducting quantum interference devices (SQUID)s were used for the detection of MCG signals due to its superior sensitivity to other magnetic sensors. However, drawback of the SQUID is the need for regular refill of a cryogenic liquid, typically liquid helium for cooling low-temperature SQUIDs. Efforts to eliminate the need for the refill in the SQUID system have been done by using cryocooler-based conduction cooling or use of non-cryogenic sensors, or room-temperature sensors. Each sensor has advantage and disadvantage, in terms of magnetic field sensitivity and complexity of the system, and we review the recent trend of MCG technology.

마이크로컴퓨터를 이용한 자체 보상형 flux-gate 마그네토미터제작 (Self Compensating Flux-gate Magnetometer Using Microcomputer)

  • 가은미;손대락;손동환
    • 한국자기학회지
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    • 제12권4호
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    • pp.149-153
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    • 2002
  • 지구자기장 이하의 저자기장 측정에 있어서 소형이고 소비전력이 작으면서 장기적 안정성이 요구되는 분야에 flux-gate 마그네토미터를 많이 사용하고 있다. 또한 많은 저자기장 측정분야가 지구자기장의 크기측정보다는 지자장의 변화를 측정하는 경우가 많기 때문에, 본 연구에서 측정범위가 $\pm$1,000 nT, 5pT/√Hz (at 1 Hz)인 flux-gate센서를 사용 $\pm$50000 nT인 지구자기장을 순차적 근사법으로 보상한 후 지구자기장의 변화를 고감도로 측정할 수 있는 3-축의 flux-gate 마그네토미터를 개발하였다.

비자기차폐환경에서 미세 자기장 측정을 위한 고온초전도 gradiometer 시스템의 개발 (Development of a HTS SQUID gradiometer system for the measurement of very weak magnetic field in an unshielded environment)

  • 김인선;김진목;박용기
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 2000년도 High Temperature Superconductivity Vol.X
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    • pp.151-154
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    • 2000
  • We have developed a YBCO SQUID gradiometer system for the measurement of a very weak magnetic field in an unshielded environment. The system consists of a SQUID gradiometer sensor, low noise pre-amp, and FLL(fluxlocked loop) control electronics. The gradiometer sensors have been fabricated on STO bicrystal substrates, and exhibit a magnetic noise of 300 fT/${\surd}$ Hz/cm at 100 Hz. The overall magnetic field noise of the SQUID gradiometer system was about 10 pT/${\surd}$ Hz/cm at 10 Hz without any magnetic shield. The system demonstrated a high stability for a long time, and real-time measurement resolution ${\le}$ 100 pT/cm in the unshielded environments.

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아몰포스선을 이용한 전력선의 자계분포 (Magnetic Field Distribution of Power Line Using Amorphous Wire)

  • Moriyama, T.;Cho, M.W.;Hikita, M.;Hong, J.W.
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2001년도 하계학술대회 논문집
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    • pp.609-612
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    • 2001
  • To investigate the magnetic field distribution of power line, we used amorphous wire sensor. And we discuss extremely low frequency magnetic field distribution dependent upon arrangement of power line and shielding pipe made from iron or alumimum materials by both measurement and FEM(Finite Element Method) analysis. Appling current of single phase 60 [Hz] 15 [A] is supplied to copper wire coated enamel resign. As the results, we confirmed that linear characteristics of amorphous wire sensor is very excellent and measurement value agrees with FEM calculation. Magnetic field distribution due to shielding materials is changed by permeability and conductivity.

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저압방전등의 사용중에 발생하는 자계특성 (Characteristics of Magnetic Field Generated by Operating Low Pressure Discharge Lamp)

  • 이복희;전덕규;길경석;백용현
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1994년도 춘계학술대회 논문집
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    • pp.63-66
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    • 1994
  • This paper describes the developed sensor for measuring the time-varying magnetic fields and presents the characteristics of the magnetic fields and presents the characteristics of the magnetic field generated by lighting a fluorescent lamp. The frequency bandwidth of magnetic field measurement system is kknown as 40 Hz∼100 kHz by means of calibration experiment. The magnetic field waveform which originates from the various lighting systems was measured and the frequency components were analyzed by fast Fourier transformation technique. The magnetic field generated during the operation of the fluorescent lamp mainly includes the odd harmonics, and in the case\ulcorner of push button switch and high frequency starter types the fast transient component is occurred in an instant of lighting.

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22.9[kV] 배전선로 주변의 전장과 자장의 분포 (Profiles of Electric and Magnetic Fields around 22.9[kV] Distribution Lines)

  • 이복희;;박종순;길형준
    • 한국조명전기설비학회지:조명전기설비
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    • 제13권2호
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    • pp.178-178
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    • 1999
  • In recent years, the electromagnetic environments are varied with the increase of power consumption and the spread of household electric appliances. Most of the interests to date have concentrated in the area of human health effects associated with exposure to power frequency electric and magnetic fields, and thus the precise measurement and analysis are required. In this paper, the measurements and analysis of the extremely low frequency(ELF) electric and magnetic fields produced by actual 22.9[kV] distribution lines were performed. The experiments have been carried out by lateral profile, and the theoretical analyses were made by use of FIELDS program for the sate of comparison with the experimental data. Electric and magnetic field intensity were strong under power distribution lines, and were inversely proportional to lateral distance. The profiles of electric and magnetic fields were M and ∩ shapes, respectively, and the measured data were good in agreement with the theoretical results. Both the electric and magnetic field intensity were increased with increasing the measurement height.