Hygiene of populated placesISSN: 2707-0441 eISSN: 2707-045X
Issue 68, 2018   -   Pages: 232-242
ACTIVE SCREENING OF THE MAGNETIC FIELD OF POWER LINE
V.Yu. Rozov1, B.I. Kuznetsov1, T.B. Nikitina1, I.V. Bovdui1
1 STATE INSTITUTION "INSTITUTE OF TECHNICAL PROBLEMS OF MAGNETISM OF THE NATIONAL ACADEMY OF SCIENCES OF UKRAINE"

ÓÄÊ: 621.3.01
https://doi.org/10.32402/hygiene2018.68.232

SUMMÀRY:
To meet the sanitary standards of Ukraine in the magnetic field in a residential area located near power transmission lines, the expediency of application in methods of active shielding is justi-fied. The analysis of the space-time electromagnetic field characteristics generated by the power lines, and the synthesis of active shielding systems of the magnetic field created by the power lines. The re-sults of theoretical and experimental studies of active shielding systems are presented, which can be used to reduce the initial magnetic field induction to the level of sanitary standards of Ukraine in a residential area located near power lines.

REFERENCES:
1. WHO. The International EMF Project. (Accessed: 17- Feb-2017). URL : http://www.who.int/peh-emf/project/en/ http://www.who.int/peh-emf/project/en/
2. Pravyla ulashtuvannia elektroustanovok. 5-te vyd. [Regulations for Arrangement of Electrical Installations. 5th ed.]. Kharkiv : Fort ; 2014 : 800 ñ. (in Ukrainian).
3. Rozov V.Yu., Grinchenko V.S., Pelevin D.E. and Chunikhin K.V. Tekhnichna elektrodynamika. 2016 ; 3 : 6-9 (in Russian).
4. Rozov V.Yu., Reutskiy S.Yu., Pelevin D.E. and Yakovenko V.N. Tekhnichna elektrodynamika. 2012 ; 1 : 3-9 (in Russian).
5. Pelevin D.E. Tekhnichna elektrodynamika. 2014 ; 5 : 14-16 (in Ukrainian).
6. Rozov V.Yu., Reutskiy S.Yu., Pelevin D.E. and Pilyugina O.Yu. Tekhnichna elektrodynamika.2013 ; 2 : 3-9 (in Russian).
7. Rozov V.Yu., Reutskiy S.Yu. and Pilyugina O.Yu. Tekhnichna elektrodynamika. 2014 ; 5 : 11-13 (in Russian).
8. Active Magnetic Shielding (Field Cancellation). URL : http://www.emfservices.com/afcs.html
9. Beltran H., Fuster V. and Garcha M. Magnetic Field Reduction Screening System for a Magnetic Field Source Used in Industrial Applications. In : 9 Congreso Hispano Luso de Ingenierna Electrica (9CHLIE), Marbella (Mlaga). 2005 : 84-99.
10. Celozzi S. and Garzia F. Active Shielding for Power-Frequency Magnetic field Reduction Using Genetic Algorithms Optimization. In : IEE Proc. Sci. Meas. Technol. Rome; 2004 ; 151 (1) : 2-7. DOI : https://doi.org/10.1049/ip-smt:20040002
11. Brake H.J.M., Wieringa H.J. and Rogalla H. Measurement Science and Technology. 1991 ; 2 (7) : 596-602. DOI : https://doi.org/10.1088/0957-0233/2/7/004
12. Yamazaki K., Kato K. and Kobayashi K. Neurology and Clinical Neurophysiology. 2004 ; 40 : 1-4.
13. Schnabel A., Voigt J., Burghoff M. and Knappe-Gruneberg S. Magnetic Shielding State of Art, New Magnetic Shielding and Active Magnetic Shielding for Low Noise Applications. Rome, Italy; 2003 ; 51 (5) : 137-142.
14. Shenkman A., Sonkin N. and Kamensky V. HAIT Journal of Science and Engineering. 2005 ; 2 (2) : 254-265.
15. Brake H.J.M., Huonker R. and Rogalla H. Measurement Science and Technology. 1993 ; 4 : 1370-1375. DOI : https://doi.org/10.1088/0957-0233/4/12/010
16. Kazuo Kato, Keita Yamazaki, Tomoya Sato, Akira Haga, Takashi Okitsu, Kazuhiro Muramatsu et al. Shielding Effect of Panel Type Active Magnetic Compensation. IEEJ Transactions on Fundamentals and Materials. 2005 ; 125 : 99-106. DOI : https://doi.org/10.1541/ieejfms.125.99
17. Kuznetsov B.I., Nikitina T.B., Bovduy I.V., Voloshko A.V., Vinichenko E.V. and Kobylyanskiy B.B. Elektrotekhnika i elektromekhanika. 2016 ; 6 : 26-30 (in Russian). DOI : https://doi.org/10.20998/2074-272X.2016.6.05
18. Clerc M. Particle Swarm Optimization. London : ISTE Ltd; 2006 : 244 p. DOI : https://doi.org/10.1002/9780470612163
19. Gazi V. and Passino K.M. Swarm Stability and Optimization. Springer ; 2011 : 318 p. DOI : https://doi.org/10.1007/978-3-642-18041-5
20. Kuznetsov B.I., Nikitina T.B., Bovduy I.V. and Voloshko A.V., Vinichenko E.V. and Kobylyanskiy B.B. Elektrotekhnika i elektromekhanika. 2017 ; 1 : 16-20 (in Russian). DOI : https://doi.org/10.20998/2074-272X.2017.1.03