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FROM THE OPERATIONAL EXPERIENCE OF THE MINING COMPANIES AND THE ORGANIZATIONS
MIRNY POLYTECHNIC INSTITUTE (BRANCH) OF NORTH-EASTERN FEDERAL UNIVERSITY OF YAKUTSK
ArticleName Results of monitoring of indicators of electric power quality of underground mine consumers
ArticleAuthor Kuznetsov N. M., Semenov A. S., Bebikhov Yu. V.
ArticleAuthorData

Mirny Polytechnic Institute (branch) of North-Eastern Federal University in Yakutsk (Mirny, Russia):

Kuznetsov N. M., Head of a Chair, Professor, Candidate of Engineering Sciences, e-mail: kuzn55@mail.ru
Semenov A. S., Senior Lecturer
Bebikhov Yu. V., Assistant Professor, Candidate of Physical and Mathematical Sciences

 

"ALROSA" JSC (Mirny, Russia):

Rybnikov A. V., Chief Power Engineering Specialist

Abstract

This article is devoted to development and application of system of monitoring of electric power quality indicators at mining enterprises. There are considered the questions of provision of quality standards of electric power. There was defined the equipment of mining enterprises, which creates the electromagnetic interferences and makes a negative influence on electric power quality. There are set the tasks of monitoring of quality indicators. There are considered various means of measurement for the control quality. There are shown new standards, which regulate methods of measurement of electric power quality indicators. Underground diamond-bearing rocks' extraction mine was chosen as an object for creation and application of system of monitoring of electric power quality indicators. List of measured characteristics was defined according to requirement of the State Standard 13109-97. There are considered various schemes of connection of analyzer to three-phase circuit. There was carried out the analysis of results of researches and indicators of quality of electric power, obtained during the use of monitoring system.

keywords Electric power quality, mining enterprise, monitoring system, indicators of electric power quality, electromagnetic compatibility, underground mine, analysis of results, harmonics, collapses and overstrains
References

1. Kozyaruk A. E., Kuznetsov N. M., Fedorov O. V., Sviridenko A. O. Gornoe oborudovanie i elektromekhanika — Mining equipment and electromechanics, 2011, No. 6, pp. 30–35.
2. Kartashev I. I., Tulskiy V. N., Kuznetsov N. M., Simutkin M. G., Nasyrov R. R. Gornoe oborudovanie i elektromekhanika — Mining equipment and electromechanics, 2012, No. 7, pp. 16–19.
3. Tulskiy V. N., Kartashev I. I., Kuznetsov N. M., Simutkin M. G., Nazirov Kh. B. Gornyi Zhurnal — Mining Journal, 2012, No. 12, pp. 52–55.
4. GOST 13109-97. Elektricheskaya energiya. Sovmestimost tekhnicheskikh sredstv elektromagnitnaya. Normy kachestva elektricheskoy energii v sistemakh elektrosnabzheniya obshchego naznacheniya (State Standard 13109-97. electric power. Electromagnetic compatibility of technical means. Quality standards of electric power in the systems of general-purpose power supply).
5. GOST R 54149-2010 (EN 50160:2010). Elektricheskaya energiya. Sovmestimost tekhnicheskikh sredstv elektromagnitnaya. Normy kachestva elektricheskoy energii v sistemakh elektrosnabzheniya obshchego naznacheniya (State Standard R 54149-2010 (EN 50160:2010). electric power. Electromagnetic compatibility of technical means. Quality standards of electric power in the systems of general-purpose power supply).

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