• Title/Summary/Keyword: 전자파인체보호기준

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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)

Study on the Improvement of Laws Related to the Electromagnetic Wave of Mobile Phones

  • Park, Jong-Ryeol;Noe, Sang-Ouk
    • Journal of the Korea Society of Computer and Information
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    • v.25 no.10
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    • pp.231-240
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    • 2020
  • Countries around the world have already taken direct and indirect measures to warn of the harmful effects of mobile phone electromagnetic waves. On the other hand, in the Republic of Korea the installation of Wi-Fi has been expandedwithout restrictions by location, and there is a widespread atmosphere of protesting human rights violations even if young students cannot use mobile phones, ignoring problems caused by the use of mobile phones. Human brain cells are increasingly exposed to electromagnetic waves of mobile phones as the penetration rate of smartphones grows.In order to solve the long-lasting question of whether electromagnetic waves from mobile phones will harm the human body, many studies are being conducted in various countries around the world, andthe recently published findingshave warned of the potential for harm. The labeling of electromagnetic waves alone is not sufficient to raise awareness about the dangers of electromagnetic waves. It is necessary that the Republic of Korea organize and operate a national electromagnetic wave research center in line with its status as an IT powerhouse, along with the revision of the Radio Wave Act, which directly warns the public about the hazards of mobile phone electromagnetic waves and can directly impose obligations on the mobile phone industry.

Research on An Equivalent Antenna Model for Induced Human Body Current by RFID Reader Antenna of HF Band (단파(HF) 대역 RFID 리더 안테나에 의한 인체 유도 전류의 등가 안테나 모형 연구)

  • Lee, Jong-Gun;Byun, Jin-Kyu;Choi, Hyung-Do;Cheon, Chang-Yul;Lee, Byung-Je;Chung, Young-Seek
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.20 no.6
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    • pp.503-508
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    • 2009
  • There are many researches on human effect by electromagnetic equipments and applications. However, most of research and guidelines for limiting human exposure to electromagnetic fields are established by mobile communication of SAR(Specific Absorption Ratio). Therefore we need to study different effects on human body when exposed to high frequency(HF) band equipments, such as human induced current etc. In this paper, we measured human induced current by RFID reader antenna of HF band in the near field and we propose human equivalent antenna which has orthogonal loops to each other. Then, we compared the induced currents on proposed equivalent antenna with human.

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.

A study on the Electromagnetic Environment for the Navigation Device and Propulsion Device in Ship (선내 항해통신장비 및 추진장비에 대한 전자파환경 연구)

  • Cho, Hyung-Rae;Choi, Gi-Do;Kim, Jong-Woo
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.15 no.1
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    • pp.87-94
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    • 2016
  • Although studies and investments on electro-magnetic fields in terrestrial areas are being conducted, they are not applied to a ship. Especially ship is consist of Top Side, Bridge, and Engine Room. Top Side is mounted Antenna and radar. Bridge is mounted navigation and navigation equipment that have a safe voyage. Finally, Engine Room is mounted switchboard and this is used to ship propulsion system. Therefore the purpose of this paper is for suggesting optimized standard to apply to marine environment through analyzing electromagnetic wave environment in ship. For this, we were measured EMF in Hanbada ship in Korea Maritime and Ocean University and we compared and analyzed to measured values in Korea standards and international standards. Consequently, Engine Room of ship for the identified that there are limits to apply. The proposed results of this research will be expected to utilize for establishing standard a plan for EMF in ship.

Electromagnetic Wave in all Base Stations (다기지국 환경에서 전자파 노출량)

  • Cho, Euy-Hyun;Park, Jeong-Kyu
    • The Journal of the Korea Contents Association
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    • v.11 no.9
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    • pp.26-44
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    • 2011
  • The Study was carreid out to see whether the intensity of electromagnetic waves in each floor of a building where the sharing base station has been established is harmful to a human body, and to expect the intensity of the waves in the building. The investigate was performed on both of sharing base station either with many scatterers or without any of them. To satisfy the international standard and the domestic TTA standard, rms for each of the electromagnetic wave of every floor in the building with the station was measured from 3 location of 3 heights(1.1m,1.5m, and 1.7m). Max of the measured rsm from the each of the frequencies in the nine location was confirmed to be 48.12%(the rooftop measured value) at most, compared to the human body protection standard. The value was confirmed to satisfy the human body protection standard for each frequency. And the total value of the calculated exposure indexes for each frequency was determined to be more than 7 times lower at most, which was 0.1445, compared to the 1 standard. Since P value in both of 868MHz and 2.14GHz electromagnetic waves intensity for each base station and floor was less than 0.05, it was revealed to be meaningful, and since R-Sq(adj) value showed a value more than 50%, the regression equation was determined to fully absorb the data information. However, although the P value of both of 868MHz and 2.14GHz electromagnetic waves intensities under the integrating terms of the base station data and the floor data was showed to be less than 0,05, since R-Sq(adj) value of 868MHz electromagnetic waves intensity presented a value smaller than 50%(34.15%), it was determined that the 868MHz electromagnetic waves intensity is very much influenced by an environment with a base station. Because the electromagnetic waves intensity of 2.14GHz show R-Sq(adj) value bigger then 50%(51.8%), The regression equation model of 2.14GHz electromagnetic waves intensity was confirmed to be proper. It also turned out not to be effected by the surrounding environment near a building with the base station and the intensity of electromagnetic waves for each floor of such building was expectable by the regression equation.

Calculation of Induced Current in the Human Body around 765 kV Transmission Lines (765 kV 초고압 송전선 주변의 인체 유도전류 계산)

  • 명성호;이재복;허창수
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.9 no.6
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    • pp.802-812
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    • 1998
  • Safety related to electric field exposure for the personnel of high voltage power plant and substation is of importance. To analyze the induced current influencing on human body in this paper, we calculate directly capacitance in three dimension which is complex and time consuming, as not to separate the voltage source and the induced object using a effective modeling technique. The proposed algorithm in this paper has been applied to 765 kV high voltage transmission line to evaluate human hazard for the induced current through the case study. As the results, the short circuit current of human body has been identified in the range of 0.3 mA to 6.8 mA. Closing to transmission line, this range of short current can exceed 5 mA that ANSI recommended let-go current. Therefore, it is necessary to countermeasure such as putting on conductive clothing in live-line maintenance of transmission line.

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EMF Measurement and Safety Assessment Method for Wireless Power Transfer System for Urban Railroad (도시철도용 무선 급집전 시스템 주변의 전자기장 측정 방법 및 안전성 평가 방법 연구)

  • Gimm, Yoon-Myoung;Kim, Jun-Hee;Ju, Young-Jun
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.29 no.12
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    • pp.942-952
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    • 2018
  • A wireless power transfer (WPT) system for an urban railroad is currently under development in S. Korea. This system supplies power to railroad cars using 60 kHz magnetic fields. The electromagnetic fields (EMFs) generated by the WPT system should satisfy established safety requirements for exposure of the human body to these fields. However, EMF measurements and the safety assessment methods for fields generated by the WPT system have not yet been established. As such, a measurement and safety assessment method for EMF generated by a WPT system for an urban railroad is proposed in this report. The EMF generated by this WPT system on a test railroad was measured and compared to the reference level set by the human safety standard for EMF exposure.

Technical Trends of In Vitro Exposure System (전자파 세포노출장치 기술 동향)

  • Lee, Y.S.;Jeon, S.B.;Choi, H.D.
    • Electronics and Telecommunications Trends
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    • v.37 no.3
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    • pp.33-40
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    • 2022
  • Communication technologies are evolving to meet the ever-increasing demand for fast transmission speeds and large capacity. However, the introduction of new mobile networks, such as 5G, should be accompanied by changes in corresponding frequency and modulation techniques to enable the commercialization of its services. Hence, investigating the human health effects of electromagnetic exposures used in these new communication systems is crucial. Since in vitro electromagnetic experiments can provide essential information on important mechanisms of exposure effects, this article presents in vitro exposure systems necessary for reliable experiments. Moreover, the fundamental requirements for system implementation and the features of various systems are discussed.

Electromagnetic Wave and EMF Attenuation by Shielding Materials in home appliances (가전제품 전자파 현황 및 차폐재에 의한 감쇄 효과)

  • Cho, Jae-Cheol;Park, Jae-Hwan
    • Asia-pacific Journal of Multimedia Services Convergent with Art, Humanities, and Sociology
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    • v.9 no.6
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    • pp.711-718
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    • 2019
  • Spectrum analyzer and electromagnetic field meter were used to investigate the EM generation behaviour in different types of home electrical appliances. During microwave oven operation, the EM power measured at a point 30cm apart was measured in the range of 8~11mW/㎡, the strength of the low frequency magnetic field was 60~80mG and the electric field strength was measured at 150~160V/m. For smart phone wireless charging pad, it was measured at an electromagnetic power of 0.4mW/㎡, an electric field of 160 V/m and a magnetic field of 1mG at a point 10cm away. For microwave oven and wireless charging pad, if used within 10cm, the size of the electric field has been measured at a large value that exceeds the human body protection standard and may be hazardous to humans. On the other hand, home appliances such as TVs, hairdryers and refrigerators all showed very low levels of electromagnetic waves, electric fields and magnetic fields, with no harmful effects seen. For electromagnetic shielding, the metal Cu fabric and metal foil had a high level of EM shielding, while polymer films had a low EM shielding characteristic.