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Examples of Electromagnetic Field Sources in an Indoor Distribution Substation

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Examples of Electromagnetic Field Sources in an Indoor Distribution Substation. / Pääkkönen, Rauno; Lundström, Marko; Mustaparta, Jari ; Korpinen, Leena.

Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic. Electromagnetics Academy, 2015. p. 561 - 564 (Progress in electromagnetics research symposium).

Research output: Chapter in Book/Report/Conference proceedingConference contributionScientificpeer-review

Harvard

Pääkkönen, R, Lundström, M, Mustaparta, J & Korpinen, L 2015, Examples of Electromagnetic Field Sources in an Indoor Distribution Substation. in Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic. Progress in electromagnetics research symposium, Electromagnetics Academy, pp. 561 - 564, Progress in Electromagnetics Research Symposium, 1/01/00.

APA

Pääkkönen, R., Lundström, M., Mustaparta, J., & Korpinen, L. (2015). Examples of Electromagnetic Field Sources in an Indoor Distribution Substation. In Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic (pp. 561 - 564). (Progress in electromagnetics research symposium). Electromagnetics Academy.

Vancouver

Pääkkönen R, Lundström M, Mustaparta J, Korpinen L. Examples of Electromagnetic Field Sources in an Indoor Distribution Substation. In Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic. Electromagnetics Academy. 2015. p. 561 - 564. (Progress in electromagnetics research symposium).

Author

Pääkkönen, Rauno ; Lundström, Marko ; Mustaparta, Jari ; Korpinen, Leena. / Examples of Electromagnetic Field Sources in an Indoor Distribution Substation. Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic. Electromagnetics Academy, 2015. pp. 561 - 564 (Progress in electromagnetics research symposium).

Bibtex - Download

@inproceedings{b41378a264ea48a0a5a09ec274abc3c4,
title = "Examples of Electromagnetic Field Sources in an Indoor Distribution Substation",
abstract = "The paper presents example measurements of electromagnetic fields in an indoor distribution substation. We measured at different places: At Place A (near the fuse panel), using (1) frequency bandwidth (FB) 40kHz-100kHz, fields varied 0.011-0.039 μT and using (2) FB 5Hz-100kHz, fields varied 67-74 μT; at Place B (the surface of the collector meter), the fields varied from 0.022 to 0.083 μT (40kHz-100kHz); at Place C (near the antenna of the collector meter), the maximum radio frequency field was 1.0 W/m2, and at Place D (the surface of the antenna), it was 1.8 W/m2. The measured values were below ICNIRP guidelines.",
author = "Rauno P{\"a}{\"a}kk{\"o}nen and Marko Lundstr{\"o}m and Jari Mustaparta and Leena Korpinen",
year = "2015",
month = "7",
day = "6",
language = "English",
series = "Progress in electromagnetics research symposium",
publisher = "Electromagnetics Academy",
pages = "561 -- 564",
booktitle = "Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic",

}

RIS (suitable for import to EndNote) - Download

TY - GEN

T1 - Examples of Electromagnetic Field Sources in an Indoor Distribution Substation

AU - Pääkkönen, Rauno

AU - Lundström, Marko

AU - Mustaparta, Jari

AU - Korpinen, Leena

PY - 2015/7/6

Y1 - 2015/7/6

N2 - The paper presents example measurements of electromagnetic fields in an indoor distribution substation. We measured at different places: At Place A (near the fuse panel), using (1) frequency bandwidth (FB) 40kHz-100kHz, fields varied 0.011-0.039 μT and using (2) FB 5Hz-100kHz, fields varied 67-74 μT; at Place B (the surface of the collector meter), the fields varied from 0.022 to 0.083 μT (40kHz-100kHz); at Place C (near the antenna of the collector meter), the maximum radio frequency field was 1.0 W/m2, and at Place D (the surface of the antenna), it was 1.8 W/m2. The measured values were below ICNIRP guidelines.

AB - The paper presents example measurements of electromagnetic fields in an indoor distribution substation. We measured at different places: At Place A (near the fuse panel), using (1) frequency bandwidth (FB) 40kHz-100kHz, fields varied 0.011-0.039 μT and using (2) FB 5Hz-100kHz, fields varied 67-74 μT; at Place B (the surface of the collector meter), the fields varied from 0.022 to 0.083 μT (40kHz-100kHz); at Place C (near the antenna of the collector meter), the maximum radio frequency field was 1.0 W/m2, and at Place D (the surface of the antenna), it was 1.8 W/m2. The measured values were below ICNIRP guidelines.

M3 - Conference contribution

T3 - Progress in electromagnetics research symposium

SP - 561

EP - 564

BT - Progress In Electromagnetics Research Symposium, July 6-9, 2015, Prague, Czech Republic

PB - Electromagnetics Academy

ER -