• 제목/요약/키워드: magnetic field standard

검색결과 133건 처리시간 0.022초

Magnetic Field Standards Using Magnetic Resonance

  • Park, Po Gyu;Kim, Wan-Seop;Joo, Sung Jung;Lee, Hyung Kew
    • 한국자기공명학회논문지
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    • 제21권1호
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    • pp.7-12
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    • 2017
  • The nuclear magnetic resonance (NMR) and atomic magnetic resonance (AMR) plays a fundamental role in achieving a high accuracy of magnetic field measurements. Magnetic field unit (T) was realized based on the shielded proton gyromagnetic ratio (${\gamma}^{\prime}_P$), helium-4 gyromagnetic ratio (${\gamma}_{4He}$) and related techniques. The magnetic field standard system has been disseminated by the NMR magnetometer and electromagnet, a Helmholtz coil system, and AMR magnetometer in the nonmagnetic laboratory. A magnetic field standard below 1 mT has been developed by using Cs and Cs- $^4He$ AMR with automatic compensation of an external magnetic field noise. The standards serve for the calibration of magnetometers and support the test of sensors and materials in the range from $5{\mu}T$ to 2.0 T with (1 to 50) ${\mu}T/T$ uncertainty (k=2).

직류-교류 자기장 표준 시스템 제작 및 국제비교 결과 (Construction of AC-DC Magnetic Field Standard Systems and Results of International Key Comparison)

  • 박포규;김영균
    • 한국자기학회지
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    • 제14권6호
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    • pp.201-206
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    • 2004
  • 자기장 측정기 교정 및 자기관련 시험 등에 사용되는 직류 및 교류 자기장 표준시스템을 제작하였다. 자기장 1 mT범위에서, 직류의 경우 확장불확도(expanded uncertainty, 2$\sigma$)는 8${\times}$$10^{-6}$, 교류의 경우, 주파수에 따른 확장불확도는 0.1~1 kHz 범위에서 0.16%, 1~5kHz에서 0.26%, 5~20kHz에서 0.44%이었다. 또한 국가측정표준에 대한 동등성과 수행한 교정 및 측정에 대한 국가간 상호인정을 받기 위하여 이 분야의 핵심측정표준 국제비교(international key comparison)에 참여하였다. 선진국과 대등한 결과를 얻었으며, 자기장 분야의 측정능력이 세계적 수준임을 확인하는 계기가 되었다.

ATP 시스템에서 열차속도에 따른 지상자에서 차상자까지의 자계의 세기 및 비트오류율에 관한 연구 (A Study on the Magnetic Field Intensity and BER from Wayside Device to On-board Device about the Train Speed in ATP System)

  • 김민석;이상혁;이종우
    • 전기학회논문지
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    • 제59권10호
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    • pp.1803-1808
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    • 2010
  • Electric railway system consists of rolling stock, track, signal and catenary system. ATP system in railway signaling system is the important one grasping the position and velocity of a train. The wayside device of ATP system is installed between rails. Recently, the research about increasing train speed has been developed in total departments of the railroad systems. The study on the information transmission between on-board device and wayside device is required for increasing the train speed in the ATP system. When the train speed is increased as to same transmission distance, the problem on information transmission occurs because the transmission time is decreased. In case that the transmission distance is extended, the transmission time is decreased with respect to the train speed. Therefore, we have to define the standard magnetic field intensity as to the train speed in order to transmit correctly telegram. In this paper, the transmission distance for the telegram is suggested on the basis of the train speed. Also, the standard magnetic field intensity from the wayside device to on-board device is proposed by using transmission distance regarding the train speed in the ERTMS/ETCS system by using Matlab program. Also, BER according to the train speed is presented by calculating electric field intensity from the magnetic field intensity.

전력구 내 전자기파에 대한 작업 환경 측정 (The Measurement of Electromagnetic Wave in Power Cable Tunnel of Underground Utility Tunnel)

  • 강대곤;박재학
    • 한국안전학회지
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    • 제34권1호
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    • pp.1-7
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    • 2019
  • Electromagnetic measurements of the power cable tunnel were conducted from August 10 to 20, 2018, in the ${\bigcirc}{\bigcirc}$ city underground utility tunnel. During this period, the average temperature was $31.89^{\circ}C$ and the humidity was 67.56% in power cable tunnel. As a result of the electromagnetic measurement, the highest electric field was 25.3 V/m and the magnetic flux density was $42.6{\mu}T$. The average electric field was 18.56 V/m and the magnetic flux density was $29.32{\mu}T$ in the power cable tunnel. As a result of comparison with the electric equipment technical standard, the electric field in the power cable tunnel was 0.5% of the electric equipment standard and 35.2% of the magnetic flux density. It's similar value that electric field is about robotic vacuum(15.53 V/m), and magnetic flux density is similar value about capsule- type coffee machine ($23.07{\mu}T$). The number of cable lines and the size of the electromagnetic waves were not proportional to each other through comparison of cable lines in the power cable tunnel. It was confirmed that 154 kV, rather than 22.9 kV, could have a greater influence on occupational.

정밀솔레노이드를 사용한 저자장 표준시스템 제작 (Construction of a Low Magnetic Field Standard System Using a Precision Solenoid)

  • 박포규;손대락;우병칠;김창석
    • 한국자기학회지
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    • 제2권2호
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    • pp.150-155
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    • 1992
  • 자장의 범위가 1 mT 이하이고, 분해능이 100 nT인 국가표준을 확립하고 저자장 측정장비의 교정 및 측정능력을 확보하기 위한 저자장 표준시스템을 제작하였다. 저장 발생용으로 석영관을 사용 한 정밀 솔레노이드를 가공.제작하였으며, 지자장 상쇄용으로 대형 3-축 헬름홀쯔 코일을 구성하였다. 자장 균일도를 향상시키기 위하여 단층 솔레노이드에서 주전류의 2개의 보조전류를 사용하는 three-current 방법을 사용하였으며, 컴퓨터를 사용하여 축상에서 최대의 균일도를 주는 조건을 계산하였다. Three-curent 방법을 사용한 경우 솔레노이드 중심축상에서 ${\pm}5\;cm$ 범위에서 0.01%, single current 일 때는 0.1%의 정밀도로 자장을 발생할 수 있었으며, 저자장 측정장비의 동특성을 측정할수 있는 시스 템을 구성하여 장비의 성능을 평가할 수 있었다.

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환상 루-프 안테나를 이용한 자기장 세기의 측정 (Magnetic Field Strength Measurement using Circular Loop Antenna)

  • 박병권;강찬구;김정환
    • 한국통신학회논문지
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    • 제16권6호
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    • pp.566-573
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    • 1991
  • 자기장 세기의 측정능력을 고찰하기 위하여 표준 자기장법으로 측정한 자기장의 세기와 표준 안테나법으로 측정한 자기장의 세기를 비교하여 보았으며, 이 결과 두 방법으로 측정한 자기장의 세기가 오차범위내에서 잘 일치함을 알 수 있었다. 또한 본 연구를 통하여 자기장 측정용 안테나 및 자기장 세기 측정기의 교정을 10KHz~30MHz의 주파수 범위에서 약 1dB의 오차내에서 가능함을 확인할 수 있었다.

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복합초전도체의 자기적 임계온도 측정의 표준화연구 (Magnetic $T_c$ Measurements of Composite Superconductors for a Standard Method)

  • 이규원;김문석;김동호;이상근
    • Progress in Superconductivity
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    • 제6권1호
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    • pp.24-31
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    • 2004
  • Magnetic $T_{c}$ of composite superconductors has been studied for providing a standard method. Various magnetization-temperature curves of NbTi, $Nb_3$Sn and Bi-2223 wires were measured using a SQUID magnetometer. Magnetization-temperature curve of zero-field-cooled procedure showed larger values than fie Id-cooled procedure. To obtain higher resolution near the onset temperature, we employed a two-field-direction method which measures a magnetization-temperature curve of a specimen first in positive and then negative fields. Analytical comparison of the magnetic $T_{c}$, with the resistive T$_{c}$ was accomplished for three specimens. The magnetic $T_{c}$/ mettled showed more detailed information on superconducting state of a specimen than the resistive$T_{c}$/ method. We have also studied the field dependence of the magnetic $T_{c}$ from 5 Oe to 120 Oe, however, no significant difference on field strength was found in our three specimensns

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공진형 무선전력전송 대역의 100kHz~10MHz 자기장에 의한 인체유도전류계산과 전자기장 인체보호기준 분석 (Calculation of Induced Current in the Human Body by Magnetic Field in the 100kHz~10MHz Resonant WPT Frequency Range and Analysis of EMF Guideline)

  • 신한수;송혜진;변진규
    • 조명전기설비학회논문지
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    • 제27권2호
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    • pp.110-119
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    • 2013
  • As the technologies such as middle-range resonant WPT (wireless power transfer) advance that utilizes medium and low-frequency magnetic field, the importance of safety of such magnetic field is growing. The research on the effect of electromagnetic field on the human body has been mainly done on the GHz range of mobile phones, or 50~60Hz range of electric power systems. However, there has been relatively few works on the 100kHz~10MHz range used in the resonant wireless power transfer. Since there is a difference in the limiting value of magnetic field between widely used ICNIRP EMF guideline and IEEE C95.1 standard, there can be possible confusion when establishing EMF (Electromagnetic Field) standard on the wireless power transfer device in the future. In this paper, the induced current in the human body, which is the basic restriction of the EMF guideline, is calculated using Quasi-static FDTD method when 3D high-resolution human model is exposed to the 100kHz~10MHz magnetic field. Using this result, the feasibility of the magnetic field reference level in the ICNIRP guideline is analyzed.

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.

교류 자기센서 특성 시험장치 설계에 관한 연구 (A Study on the Measurement System Design for Measuring Properties of AC Magnetic Field Sensor)

  • 정현주;양창섭;정우진
    • 한국군사과학기술학회지
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    • 제18권3호
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    • pp.244-252
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    • 2015
  • This paper describes design and construction results of the measurement system developed on the purpose of measuring properties of AC magnetic field sensors used in the weapon system. The system for measuring the properties of AC magnetic field sensors consist of 3-axis helmholtz coil, signal generator, signal amplifier, sensor data acquisition unit and AC magnetic field sensor property measurement & analysis equipment including the operating software. By using this system, we can measure various properties of AC magnetic field sensor such as sensitivity, linearity and dynamic response in the frequency from 1 Hz to 10 kHz. Finally we also verified its performance by measuring the property of a MAG 639, standard magnetic field sensor of bartington instruments, with the developed measurement system.