• Title/Summary/Keyword: ICNIRP(international Commission on Non-Ionizing Radiation Protection)

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Analysis of time-varying low-frequency electric magnetic field emitted from electric rolling stocks fed by VVVF inverter (VVVF 인버터로 구동되는 전기철도차량에서 방출되는 시변 저주파 전자계 분석)

  • Jang, Dong-Uk;Kim, Joo-Rak;Kim, Heol-Cheol
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.507-513
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    • 2010
  • This paper is described the analysis of time-varying low-frequency electric magnetic field emitted from electric rolling stocks fed by VVVF inverter, in reference to allowable magnitude for exposures to time-varying electromagnetic field issued by International Commission on Non-Ionizing Radiation Protection(ICNIRP). The level of the magnetic field strength was measured, in reference to the standard for occupational environments, which takes into account the public person's protection against the excessive emission of the low-frequency magnetic field, 5 Hz ~ 2 kHz.

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멀티미디어 무선통신기기의 인체보호 기준 및 측정방법

  • Shin, Chan-Su;Choi, Dong-Geun;Kim, Nam;Oh, Hak-Tae;Seong, Ju-Yeong
    • The Proceeding of the Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.3
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    • pp.91-101
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    • 2004
  • SAR(Specific Absorption Rate: 전자파 흡수율)이란 생체조직이 단위 질량당 흡수하는 전력(W/kg)으로 ICNIRP(International Commission on Non-ionizing Radiation Protection: 국제비전리방사위원회)국제 규격에서는 10 g평균 첨두 SAR 값을 인체 전신 및 국부(두부 및 몸통)에 대해 각각 0.08 W/kg과 2 W/kg으로 규정하고 있고, 미국의 FCC 규격에서는 국부노출의 경우 1 g 평균 첨두 SAR 값을 1.6 W/kg 값으로 제한하고 있다. (중략)

Realistic Head Phantom for Evaluation of Brain Stroke Localization Methods Using 3D Printer

  • Lee, Juneseok;Bang, Jihoon;Choi, Jaehoon
    • Journal of electromagnetic engineering and science
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    • v.16 no.4
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    • pp.254-258
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    • 2016
  • In this paper, a brain phantom for evaluating brain stroke localization is proposed. To evaluate brain stroke localization, a phantom imitating three-dimensional (3D) simulation environment is needed. Mold for the proposed phantom was printed by a 3D printer and the interior of the phantom consists of 5 different brain tissue materials. Each of the brain tissue materials has the conductivity and permittivity similar to those of the International Commission on Non-Ionizing Radiation Protection (ICNIRP) standards for a frequency band from 0.5 to 2 GHz.

Calculation of the Electromagnetic Fields Distribution around the Human Body and Study of Transmission Loss Related with the Human Body Communication (인체 통신에 따른 인체 주변에서의 전기장 분포 계산 및 전송 손실 연구)

  • Ju, Young-Jun;Gimm, Youn-Myoung
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.23 no.2
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    • pp.251-257
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    • 2012
  • Human body communication means transmitting and receiving data through human body medium or through free space along with the human body skin. Electric field distribution around the human body between the transmitter and the receiver were calculated at five different frequencies with 5 MHz interval between 10 MHz and 30 MHz. Commercial electromagnetic simulation tool was used for the calculation of E-field distributions applying the Korean standard male model including 29 different kinds of human tissues. After calculating specific absorption rate(SAR) values on back of the hand, it was compared with International Commission on Non-Ionizing Radiation Protection(ICNIRP) human protection guideline. While conductivities(${\sigma}$) and relative permittivities(${\varepsilon}_r$) of the human tissues for each frequency were input as the analyzing parameters, electric field intensities near both hands were integrated along the integral line between the nearby electrodes for the calculation of the transmitting and receiving voltages whose ratio was defined as channel loss. The calculated channel losses were about ($75{\pm}1$) dB and showed nearly flat response all through the evaluated frequencies.

Human Safety Assessment for a 4 × 8 Array Antenna Used for Wireless Power Transfer at 2.4 GHz (2.4 GHz의 무선전력전송에 사용되는 4 × 8 배열 안테나에 대한 인체안전성평가)

  • Ju, Young Jun;Kim, Jun Hee;Lee, Yu-ri;Gimm, Yoon-Myoung;Lim, Yong Seok
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.10a
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    • pp.338-341
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    • 2018
  • Wireless Power Transfer(WPT) of array antenna applied to beam-forming techniques enables highly efficient WPT when transmitters and receivers are not contacting and even when they are separated. However, this WPT method is possible to use only when human safety restriction by distance between the transmitters and the receivers is satisfied. In the paper, a $4{\times}8$ array antenna for 2.4 GHz is modeled by simulation, then electric field intensity and 10 gram average head SAR(Specific Absorption Rate) by distance away from the array antenna inputted 1 W of 2.4 GHz sinusoidal wave at each single antenna of the array antenna for 2.4 GHz were obtained. And they were compared with human safety restriction of draft of 2018 ICNIRP(International Commission on Non-Ionizing Radiation Protection) guidelines. As the result, power density of far field derived from the electric field intensity was $33.257W/m^2$, which satisfied with occupational human safety restriction but exceeded public's. In addition, the 10 gram average head SAR exceeded the human safety restriction.

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Analysis of Electromagnetic Wave Exposure Due to 6.78 MHz Wireless Power Transfer System (6.78 MHz 무선전력전송 시스템에 의한 전자파 노출량 분석)

  • Yoon, Seok;Jung, Hyeonjong;Lim, Yeongseog
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.28 no.12
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    • pp.954-963
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    • 2017
  • In this paper, we analyzed the electric/magnetic field distribution and SAR distribution in a human body due to the resonant-type wireless power transfer(WPT) system with an operating frequency of 6.78 MHz. To analyze the field distribution under the unperturbed condition, a prototype system was fabricated and the measured results were compared with the simulation results. For safety during measurement, the available power to the transmitter coil is limited to 1 W. To analyze the induced current density and SAR distribution, a simple human model consisting of three layers, skin, fat, and muscle, was used for the simulation. The electromagnetic wave exposure levels obtained through measurement and simulation were compared with the recommended levels by the ICNIRP.

Analysis of Human Exposure for Wireless Devices Near War-Fighter (전투원 신체 주변 통신기기의 인체 노출량 분석)

  • Seo, Min-Gyeong;Choi, Jeung-Won;Ko, Jong Hwan;Lee, Hyunsung;Park, Juman;Pack, Jeong-Ki
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.1
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    • pp.106-112
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    • 2013
  • In this paper, human exposure of wireless devices was analyzed for various positions of the transmitter. The scenario for the position of the transmitting antenna was decided after discussion with ADD(Agency for Defense Development), and Korean male phantom model developed by ETRI were used to conduct simulations. The SAR values were analyzed by changing the position of the transmitter, and compared with Korean EMF regulations and ICNIRP guidelines. Additionally, human exposure was also investigated for two typical postures which can be posed by war-fighter.

Cross-Shaped Magnetic Coupling Structure for Electric Vehicle IPT Charging Systems

  • Ren, Siyuan;Xia, Chenyang;Liu, Limin;Wu, Xiaojie;Yu, Qiang
    • Journal of Power Electronics
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    • v.18 no.4
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    • pp.1278-1292
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    • 2018
  • Inductive power transfer (IPT) technology allows for charging of electric vehicles with security, convenience and efficiency. However, the IPT system performance is mainly affected by the magnetic coupling structure which is largely determined by the coupling coefficient. In order to get this applied to electric vehicle charging systems, the power pads should be able to transmit stronger power and be able to better sustain various forms of deviations in terms of vertical, horizontal direction and center rotation. Thus, a novel cross-shaped magnetic coupling structure for IPT charging systems is proposed. Then an optimal cross-shaped magnetic coupling structure by 3-D finite-element analysis software is obtained. At marking locations with average parking capacity and no electronic device support, a prototype of a 720*720mm cross-shaped pad is made to transmit 5kW power at a 200mm air gap, providing a $1.54m^2$ full-power free charging zone. Finally, the leakage magnetic flux density is measured. It indicates that the proposed cross-shaped pad can meet the requirements of the International Commission on Non-Ionizing Radiation Protection (ICNIRP) according to the Australian Radiation Protection and Nuclear Safety Agency (ARPANSA).

ELF 3D Magnetic Field and Eddy Current Calculation of Human Body Around Transmission Lines (송전선로 주변의 3차원 자기장 및 인체 유도 와전류 계산)

  • Myeong, Seong-Ho;Lee, Dong-Il;Sin, Gu-Yong;Han, In-Su;Park, Jong-Geun
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.51 no.10
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    • pp.485-491
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    • 2002
  • Since Wertheimer and Leeper reported possible adverse health effects of magnetic field in 1979, worldwide researches on this issue have been conducted. More recently, the U.S. Congress instructed the NIEHS (National Institute of Environmental Health Sciences), NIH (National Institute of Health) and DOE (Department of Energy) to direct and manage EMF RAPID (Electric and Magnetic Fields Research and Public Information Dissemination) program aimed at providing scientific evidence to clarify the potential for health risks from exposure to extremely low frequency electric and magnetic fields(ELF-EMF). Although they concluded that the scientific evidence suggesting adverse health risks of ELF-EMF is weak, the exposure to ELF-EMF cannot be recognized as entirely safe. Therefore, the purpose of this article is to describe magnetic field 3-D calculation and to evluate eddy current of human body compare to international guide line recognized one of the basic problems. In open boundary problem, Magnetic field using FEM is not advantageous in the point of the division of area and the proposition of the fictitious boundary. Therefore, we induced the analytic equation of magnetic field calculations so but the finite line segment based on Biot-Savarts law Also, Eddy currents induced due to ELF-EMF magnetic field are computed. To calculate induced currents, impedance method is used in this paper, An example model of human head with resolution of 1.27cm is used. In this paper, We evaluate the magnetic field and eddy current of human head around 765 kV transmission lines compare to international guide line.

Discussion of Exposure Evaluation Associated with Extremely Low Frequency-magnetic Field in the Case of Portable Hand-held Fans (휴대용 손 선풍기의 극저주파 자기장 발생 수준 평가와 쟁점 고찰)

  • Park, Dong-Uk;Yi, Seongjin;Kim, So-Youn;Bae, Seo-Youn;Choi, Sangjun;Kim, Won;Min, Sung Hyon;Park, Jihoon;Ahn, Jongju
    • Journal of Environmental Health Sciences
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    • v.44 no.5
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    • pp.480-490
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    • 2018
  • Objective: This study aimed to report the level of extremely low frequency-magnetic field (ELF-MF) emitted by portable hand-held fans (HHF) and to discuss the methodologies for determining the health risk of ELF-MF for HHF products. Method: ELF-MF was monitored at eight locations by distances in the vicinity of HHFs. A total of 13 HHF brands on the market were randomly selected. A portable ELF-MF monitor MDEX II was used to measure the ELF-MF level in the range of 40-800 Hz with a resolution of $0.01{\mu}T$. This study also examined the frequency results of a total of 45 HHF products investigated by the Korean Ministry of Science and ICT (KMSICT). Results: ELF-MF higher than $0.3{\mu}T$ was found to be emitted at a distance of less than 20 cm from 12 HHF. ELF-MF emitted from four products was found to exceed the reference level ($83.3{\mu}T$ based on 60 Hz) recommended by the International Commission on Non-Ionizing Radiation Protection (ICNIRP). KMSIT reported that the principle frequency emitted from the HHFs ranged from 54 Hz to 284 kHz, without the level of LEF-MF. Unscientifically, the KMSICT used the reference level by ICNIRP as the chronic level and concluded that all HHFs are safe with a basis of 1.2-36.0% less than the reference level. Conclusion: The HHF emitted much higher levels of ELF-MF than $0.3-0.4{\mu}T$, which is regarded as the reference level for childhood leukemia. The risk of HHF should be examined in terms of whether they can be used by the general public, including children and pregnant woman.