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POWER SYSTEM MANAGEMENT AND AUTOMATION
ArticleName Instrumentation of electrical safety control in operation of district distributing mains in iron ore mines
DOI 10.17580/gzh.2015.05.16
ArticleAuthor Sinchuk O. M., Likarenko A. G., Petrychenko A. A., Shkrabets F. P.
ArticleAuthorData

Author 1:
Name & Surname: Sinchuk O. M.
Company: Kryvyi Rih National University (Kryvyi Rih, Ukraine)
Work Position: Head of department
Scientific Degree: Doctor of Engineering Sciences
Contacts: speet@ukr.net


Author 2:
Name & Surname: Likarenko A. G.
Company: Kryvyi Rih National University (Kryvyi Rih, Ukraine)
Work Position: Assistant Professor
Scientific Degree: Candidate of Engineering Sciences


Author 3:
Name & Surname: Petrychenko A. A.
Company: Kryvyi Rih National University (Kryvyi Rih, Ukraine)
Work Position: Postgraduate student


Author 4:
Name & Surname: Shkrabets F. P.
Company: National Mining University (Dnipropetrovsk, Ukraine)
Work Position: Head of department, Professor
Scientific Degree: Doctor of Engineering Sciences

Abstract

The article sets forward a concept of electrical safety control in iron ore mines operating electrical mains with inserted complex power sources with semiconductor voltage converters. The analytical expressions are given, and it is shown that existing instruments of surface-leakage current protection with dc control power are unable to ensure standard electric safety of mine electric mains. The authors lay foundation for the development and use of surface-leakage current protection devices with ac control power that will eliminate unsettling influence exerted by isolation capacitance of circuit on the protective performance of the devices, and will handle the problem of independent control over isolation resistance and current leakage by setting critical isolation resistance to be much lower that single-phase current leakage and to be consistent with the electrical safety standards. The authors describe the structure of protection instrumentation block — BAZUK 380/220 relay and UZSH 380/220 discrimination protection as well as their protective performance ensuring standard minimum electric safety. Sustained surface leakage current is not higher than 15.2 mA, momentary surface-leakage current is not higher than 81 mA, and the response time of the instrumentation is under 74 ms. The protection selectivity of UZSH 380/220 has been confirmed by the absence of false response in the tests under RF State Standard 22929-78.

keywords Electric safety, surface-leakage current, touch voltage, mains isolation, semiconductor energy converters, controlled velocity electric drives, complex mains, protection instrumentation, characteristics, UZSH instrumentation unit
References

1. GOST SSBT 12.1.038-82. Elektrobezopasnost. Predelno dopustimye znacheniya napryazheniy prikosnoveniya i tokov (s izmeneniyami) (State Standard Occupational safety standards system 12.1.038-82. Electrosecurity. Admissible limit values of contact and current voltage (with changes)). Moscow : Publishing House of Standards, 2003. (in Russian).
2. Leybov R. M. Utechki v shakhtnykh elektricheskikh setyakh (Leakage in mine current networks). Moscow : Ugletekhizdat, 1952. 363 p.
3. GOST 22929-78. Apparaty zashchity ot tokov utechki rudnichnye dlya setey napryazheniem do 1200 V (s izmeneniyami) (State Standard 22929-78. Leakage carrent mine-type protective devices for voltages up to 1200 V. General specifications (with changes)). Moscow : Publishing House of Standards, 2004. (in Russian).
4. Traube E. S., Lukachevich Yu. Yu., Shavelkin A. A. Zakonomernosti formirovaniya tokov utechki na zemlyu v shakhtnykh setyakh s preobrazovatelyami chastoty (Regularities of earth leakage current rise in mine networks with frequency shifters). Bezopasnaya, ekonomichnaya i nadezhnaya ekspluatatsiya vzryvozashchishchennogo elektrooborudovaniya : sbornik nauchnykh trudov VNIIVE (Safe, economical and reliable exploitation of dust-ignition-proof electrical equipment : collection of scientific proceedings of UkrNIIVE). Donetsk, 1990. pp. 34–43.
5. Savitskiy V. N., Beloshistov A. I., Stadnik N. I., Sergeev A. V. Zashchita ot tokov utechki v kombinirovannykh raspredelitelnykh setyakh elektrosnabzheniya ochistnykh kombay nov (Protection from leakage current in combined distribution networks of electric supply of cutter-loaders). Ugol Ukrainy = Ukrainian coal. 2007. No. 12(612). pp. 23–25.
6. Ivanov E. A., Dudnik V. D., Kitaenko G. I. Osobennosti funktsionirovaniya ustroystv kontrolya i zashchity v setyakh peremennogo toka, svyazannykh s tsepyami postoyannogo toka (Peculiarities of functioning of control and protection devices in alternating current networks, connected with constant cutrrent networks). Elektrichestvo = Electricity. 1983. No. 10. pp. 11–18.
7. Likarenko A. G., Petrichenko A. A. Apparat zashchity ot tokov utechki rudnichnyy dlya kombinirovannykh shakhtnykh setey 380 i 220 V tipa BAZUK-380/220 (Mine apparatus of protection from leakage currents for combined shaft network 380 and 220 В BAZUK-380/220 (БАЗУК-380/220)). Gornaya elektromekhanika i avtomatika. Nauchno-tekhnicheskiy sbornik (Mining electromechanics and automatics. Scientific-technical collection). Dnepropetrovsk, 2012. Iss. 89. pp. 40–47.
8. Shkrabets F. P., Likarenko A. G., Parkhomenko R. A. Apparatura selektivnoy zashchity ot tokov utechki dlya kombinirovannykh elektricheskikh setey 380 i 660 V rudnykh shakht (Equipment of selective protection from leakage currents for combined electric networks 380 and 660 V of mine shafts). Elektromekhanicheskie i energosberegayushchie sistemy = Electromechanic and energy saving systems. 2012. No. 2/2012(18). pp. 72–84.

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