• 제목/요약/키워드: extremely low frequency magnetic fields

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SQUID를 이용한 뇌 청각유발 자장의 측정 (Measurements of Auditory Evoked Neuromagnetic Fields using Superconducting Quantum Interference Devices)

  • 이용호;권혁찬;김진목;박용기
    • 대한의용생체공학회:의공학회지
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    • 제18권4호
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    • pp.421-428
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    • 1997
  • 초전도양자간섭소자(SQUID)를 이용한 자장센서는 현재 개발된 자장센서중에서 감도가 가장 우수한 소자로서 인체의 두뇌에서 발생하는 매우 미약한 자장에 측정이 가능하다. 뇌자도측정은 현재 많이 사용되고 있는 전기적인 측정(뇌파, 뇌유발전위) 에 비해 공간분해능이 우수하고, fMRI나 PET에 비해서는 시간분해능이 우수하므로 뇌기능연구에 유용하게 사용될 수 있다. 본 연구에서는 뇌자도 측정을 위하여 4-채널 SQUID시스템을 개발하였다. 개발된 시스템의 주요 특징은 새로운 방식의 SQUID센서를 채택함으로서 간단한 회로로써 SQUID구동이 가능하도록 하였으며, 검출코일의 신뢰성을 향상시키기 위하여 집적화된 평면형 코일을 사용하였다. 외부 환경잡음을 소거하기 위하여 자기차폐실을 설치하였고, 개발된 SQUID 시스템을 이용하여 뇌의 청각령으로부터 발생하는 자기신호를 측정하였다.

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초고전압 극 저주파 송전선하에서 발생하는 전기자기장의 분석적 해석 (Analytic Solutions of Electric and Magnetic Fields under Power Transmission Line at Extremely Low Frequency)

  • 이재중;정용식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.1271-1272
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    • 2015
  • 송전선로 아래에서의 전기장과 자기장의 계산은 2013년 밀양 송전탑 사건에서 볼 수 있듯이 매우 중요한 문제로 대두되고 있다. 공간을 전파해 나가는 전자파의 특성과는 다르게 5~60Hz의 매우 낮은 주파수(ELF: Extremely Low Frequency)로 송전을 하는 송전선로에서는 발생원으로부터 거리에 따라 반비례하여 그 크기가 작아지는 정전기장 및 정자기장을 발생시킨다. 하지만 수백 kV의 높은 송전전압 때문에 주변에서의 전기장 자기장의 값이 매우 크게 되고 이로 인한 논란이 많기 때문에 정확한 정량적 해석이 불가피한 실정이다. 본 논문에서는 수백 kV로 송전되는 송전선로에서 발생 하는 전기장과 자기장을 해석적으로 계산하고 지면으로 부터 특정한 높이에 따라 전기장 자기장이 어떻게 변화 하는지에 대한 결과를 분석 하였다. 송전 선하에 전기장 및 자기장의 분포는 MATLAB을 통해서 계산 되었다.

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생체 실험용 극저주파 자기장 발생 장치의 설계 (Design of a Magnetic Field Source for In Vivo Experiments at Extremely Low Frequency)

  • 김정호;김윤명
    • 한국전자파학회논문지
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    • 제14권8호
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    • pp.871-877
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    • 2003
  • 본 논문에서는 생체 실험용 극저주파 자기장 발생장치를 설계하였다. 생체실험 대상 동물이 유동적이지 않고 고정될 경우, 인가 자기장의 방향성에 대한 영향이 있을 수 있다. 이 방향성 영향을 줄이기 위해 2 축에 4개씩, 총 8개의 코일을 사용하여 2축 4중 Helmholtz 코일 구조의 장치를 설계하였다. 정육면체 구조의 자기장 발생 장치를 원통형으로 근사화시킨 수식을 유도하여, 원하는 특정 자기장을 위한 권선수 및 전류치를 계산하였으며, 각 코일의 최적 위치 및 최적 권선비는 수치계산을 통하여 구하였다. 이렇게 얻어진 수치들을 MATLAB 으로 제작한 계산 프로그램에 적용하여, 발생장치 주변에서의 자기장 분포를 계산 해보았으며, 공간에 따른 자기장 세기의 균일도를 평가하여 균일 자기장 분포영역 또는 생체 실험가능 영역을 도출하였다. 잘 설계된 장치의 해석 결과, 임의 기준 자기장에 대해 약 95 %의 균일도를 만족시키는 공간은 정육면체 구조에서 축길이의 60 % 이상이 됨을 확인하였다.

LCD 제조공정 종사근로자의 극저주파자기장 노출특성 연구 (A Study on the Extremely Low Frequency Magnetic Fields Exposure Characteristics of Workers in LCD Manufacturing Process)

  • 김준범;강준혁;정은교;정기효
    • 한국산업보건학회지
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    • 제32권1호
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    • pp.10-20
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    • 2022
  • Objectives: The aim of this study is to evaluate exposure levels of the extremely low frequency magnetic fields(ELF-MF) radiated from various electric facilities in Liquid Crystal Display(LCD) manufacturing processes. Methods: This study measured the exposure levels of personal and local ELF-MF for the electronic facilities installed in two LCD manufacturing companies. Samplers were installed around workers' waist during working hours to identify personal exposure levels, and direct reading equipment were located at 3 cm, 10 cm, and 30 cm away from the surface of the electronic facilities to measure local exposure levels. Average and maximum(ceiling) values were calculated for personal and local exposure levels. Results: Average and maximum of personal exposure levels for each worker were 0.56(mean) ± 0.02(SE) µT and 6.31 ± 0.75 µT, respectively. Statistical analyses of the study found that maximum of the personal exposure levels for engineers was significantly higher than that for operators since engineers spend more time near the electronic facilities for repairing. The range of maximum personal exposure levels was 0.50 ~ 43.50 µT and its highest level was equivalent to 4.35 % of ACGIH(American Conference of Governmental Industrial Hygienists) exposure limit value(1 mT). Maximum of local exposure levels was 8.18 ± 0.52 µT and the electronic facilities with higher exposure levels were roof rail and electric panel, which were not related to direct manufacturing. The range of maximum local exposure levels was 0.60 ~ 287.20 µT and its highest level was equivalent to 28.7 % of the ACGIH exposure limit value. Lastly, the local exposure levels significantly decreased as the measurement distance from the electronic facilities increased. Conclusions: Maximum of personal and local exposure levels did not exceed the exposure limit value of ACGIH. However, it is recommended to keep the workers as far as possible from the sources of ELF-MF.

계통상태를 고려한 송전선의 ELF 전자계 (ELF Electric and Magnetic Fields under the Transmission Line Including Electric Power System States)

  • 김두현;김상철
    • 한국안전학회지
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    • 제11권3호
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    • pp.89-96
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    • 1996
  • This paper presents a study on the analysis and evaluation for ELF( Extremely Low Frequency) electric and magnetic fields under the transmission line according to the power system states. The power system states are classified into two types, normal state resulting from normal operation and alert state from outages. The current in a system is changed continually owing to the load fluctuations even in a normal operation. To calculate the current of the concerned line in a normal state, the system load level is devided into light, base and heavy load level. In case of contingency, an efficient algorithm based on matrix inversion lemma is developed to figure out the current changes. In order to analyze the variations of ELF field caused by the current fluctuations the electrostatic field approach which is far simpler than the electromagnetic field one based on Maxwell equation is introduced in this paper. The suggested method is applied to the IEEE 14 bus system to demonstrate the usefulness.

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발전기의 전자기장 분포 특성에 따른 작업자 노출공간 분석 (Analysis of Worker Exposure Space according to Distribution of Electromagnetic Field of Generator)

  • 성민영;김두현;김승태
    • 한국안전학회지
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    • 제36권4호
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    • pp.20-28
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    • 2021
  • With an increase in the commercialization of electricity, and the development of advanced and large electric devices and various wireless radio wave services, concerns over the effects of electromagnetic fields on human health have increased. Accordingly, the World Health Organization encouraged the development of international standards by establishing the 'International Electromagnetic Fields Project' in 1996 based on studies on the harmful effects of electromagnetic fields on the human body. Moreover, the National Institute of Environmental Health Sciences (NIEHS) classified electromagnetic fields as possible carcinogens under Group 2B category, even though they have been found to have a weak correlation with those effects on human health. Mid-to-large-sized electric facilities used at industrial sites mostly adopt a commercial frequency of 60 Hz, and workers handling these facilities are exposed to such extremely low frequency (ELF) fields for a long time. A previous study suggested that exposure to ELF electromagnetic fields with frequency ranges from 0 to 300 Hz, even for a short time, at densities higher than 100 μT may have harmful effects on human body as it affects the activation of nerve cells in the central nervous system by inducing an electric field and current and stimulating muscles and the nervous system in the body. Such studies, however, focused on home appliances used by ordinary people, and research on facilities utilizing high-capacity current and operated by workers at industrial sites is lacking. Therefore, in this study, a 3000 kilowatt generator, which is a high-capacity electric facility employed at industrial sites, was investigated, and the size of the magnetic fields generated during its no-load and high-load operations per distance to produce a map was measured to reveal spots deemed hazardous according to domestic and international exposure standards. The findings of this study is expected to alleviate workers' anxiety about the harmful effects of magnetic fields on their body and to minimize the level of exposure during operations.

60Hz ELF 자계에 대한 고 도전율 및 고 투자율 재료의 차폐효과 분석 (Investigation of Shielding Effects of High Conductivity of High Permeability Materials on 60Hz ELF Magnetic Fields)

  • 송기현;명성호;민석원
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제54권4호
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    • pp.166-171
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    • 2005
  • Shielding methods on ELF(Extremely Low Frequency) magnetic fields may include the use of induced currents, modification of magnetic field flux patterns using high permeability and/or high conductivity materials, and others. The magnetic shielding properties of enclosures can be utilized to reduce the magnetic field of current carrying conductors. In this paper, to get a more practical understanding of shielding phenomena, we have investigated the magnetic field reduction by means of 3 dimensional numerical analysis and experiments. We found copper could reduce flux density more then permalloy in both cases of box shield and cylindrical shield. Iron under l0$\mu$T of 1 phase could reduce flux density about $20\%$ more than silicon steel, but both of them under 50$\mu$T has a similar reduction rate of $10\%$. The 3 phase horizontal model gave the highest reduction rate and the 1mm thickness iron under 10$\mu$T of 3 phase lines did lowest.

고압 송전선로 주변에 위치한 초등학교 학생들의 극저주파 자기장 노출량 예측 모델에 관한 연구 (Study about Prediction Model to Extremely Low Frequency Magnetic Fields for the Selected Primary Schoolchildren Nearby High Voltage Power Line)

  • 김윤신;현연주;최성호;노영만;홍승철
    • 한국환경보건학회지
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    • 제32권5호
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    • pp.506-514
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    • 2006
  • The objectives of this study were to evaluate personal exposure estimated using a time activity pattern and microenvironmental model. The study was carried out for 44 children attending a primary school nearby the lines (school A) and 125 children attending a school away from 154 kV power lines (school B). For children attending school A, the estimated personal level was a little weak correlated with the measured level($Pearson\;r\;=0.34{\sim}0.35$). For children attending school B, the correlation was very low ($Pearson\;r\;=\;0.09{\sim}0.16$) using the TW A Model II, otherwise, TWA Model II-I which considered the average residential MF level according to the distance from the power line and home explained $39{\sim}53%$ of the correlation in MF personal exposures. The estimated personal exposure level was very well represented by the measured exposure level using TWA Model II-2 which consisted on spot and 24 h stationary measurements at subject's home ($Pearson\;r\;=\;0.65{\sim}0.85$). In conclusion, personal magnetic field expsoure estimated using a TWA Model II-2 should be provided for a reasonable estimate of measured exposure in schoolchildren living near the power line.

Influence of Exposure to Extremely Low Frequency Magnetic Field on Neuroendocrine Cells and Hormones in Stomach of Rats

  • Hong, Min-Eui;Yoon, Kyu-Hyun;Jung, Yoon-Yang;Lee, Tae-Jin;Park, Eon-Sub;Sohn, Uy-Dong;Jeong, Ji-Hoon
    • The Korean Journal of Physiology and Pharmacology
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    • 제15권3호
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    • pp.137-142
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    • 2011
  • Extremely low frequency magnetic fields (ELF-MF) have the ability to produce a variety of behavioral and physiological changes in animals. The stomach, as the most sensitive part of the neuroendocrine organ of the gastrointestinal tract, is crucial for the initiation of a full stress response against all harmful stress. Thus, the purpose of this study was to examine whether ELF-MF stimuli induce changes in the activity of neuroendocrine cells, considering their involvement in endocrine or paracrine effect on surrounding cells. The exposure to ELF-MF (durations of 24 h and 1 or 2 weeks, 60 Hz frequency, 0.1 mT intensity) altered the distribution and occurrence of gastrin, ghrelin and somatostatinpositive endocrine cells in the stomach of rats. The change, however, in the secretion of those hormones into blood from endocrine cells did not appear significantly with ELF-MF exposure. Comparing with sham control, ELF-MF exposure for 1 and 2 week induced an increase in $BaSO_4$ suspension propelling ratio of gastrointestinal tract, indicating that ELF-MF affects gastrointestinal motility. Our study revealed that ELF-MF exposure might influence the activity of endocrine cells, an important element of the intrinsic regulatory system in the digestive tract. The pathophysiological character of these changes and the mechanism responsible for neuroendocrine cell are still unclear and require further studies.

고압 가공송전선로의 극저주파자기장 환경영향평가 방법 표준화에 관한 연구 (Study on Standardization of the Environmental Impact Evaluation Method of Extremely Low Frequency Magnetic Fields near High Voltage Overhead Transmission Lines)

  • 박성애;정준식;최태봉;정민주;김부경;이종천
    • 환경영향평가
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    • 제27권6호
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    • pp.658-673
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    • 2018
  • 극저주파자기장 노출에 대한 사회적 갈등은 계속되는 전력 수요의 증가와 고압송전선로의 증설로 심화될 것으로 예상되고 있다. 그러나 현행 환경영향평가법상 이에 대한 구체적 작성규정이나 지침이 마련되어 있지 않은 실정이다. 따라서 본 연구는 극저주파자기장의 주요 발생원이라 할 수 있는 고압 가공 송전선로를 대상으로 환경영향평가 사례분석, 현장측정 및 전문가 자문을 통하여 환경영향평가 방법에 대한 표준화 연구를 수행하였다. 극저주파자기장의 환경영향평가의 문제점과 개선해야 할 사항을 도출하고, 이를 반영하여 환경영향평가 방법을 제안하였다. 주요내용으로는 환경영향평가의 현황조사-영향예측-저감방안마련-사후환경영향평가계획의 각 단계에서 거리와 전류량에 영향을 받는 극저주파자기장의 물리적 특성을 고려한 계획수립 및 결과분석 과정을 제안하였다. 본 연구 내용을 기반으로 환경영향평가 실무에 적용시킬 수 있는 '전력선에 대한 극저주파자기장 공정시험방법(안)'과 '전력선에서의 극저주파자기장 측정기록표'를 마련하였고, 29개 항목의 극저주파자기장 점검표를 작성하였다. 이러한 연구결과는 극저주파자기장의 장기적 노출에 대한 인체유해성이 불명확한 현 시점에서 송전선로 피해와 갈등을 최소화하고 합리적 방안을 도출하는 환경영향평가에 활용될 수 있을 것이다.