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Higher harmonics filtration in the power supply system of thyristor hoisting machine of shaft transport in a mining plant

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PL
Filtracja wyższych harmonicznych w układzie zasilania tyrystorowej maszyny wyciągowej transportu szybowego w kopalni
Języki publikacji
EN
Abstrakty
EN
The paper presents the issues of the influence on the supply electrical power grid of the thyristor rectifier supplying high power receivers such as a shaft hoisting machines in mining. The current distortion influence of the non-linear load on the quality of electricity in the plant's power grid was presented. Methods of higher harmonics filtration of the current supplying the hoisting machine are discussed. The results of control tests of the effectiveness of shunt passive higher harmonic filters after changing the configuration of the power grid of the mine are presented.
PL
W artykule zaprezentowano zagadnienia wpływu na sieć zasilającą przekształtników tyrystorowych zasilających odbiorniki dużej mocy jakimi są szybowe maszyny wyciągowe w kopalniach. Przedstawiono wpływ zniekształcenia prądu odbiornika nieliniowego na jakość energii elektrycznej w sieci zakładu. Omówiono metody filtracji wyższych harmonicznych prądu zasilającego maszynę. Zaprezentowano wyniki badań kontrolnych skuteczności działania pasywnych filtrów równoległych/gałęziowych wyższych harmonicznych po zmianie konfiguracji sieci elektroenergetycznej kopalni.
Rocznik
Strony
43--48
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
  • Silesian University of Technology, Faculty of Electrical Engineering, Department of Power Electronics, Electrical Drives and Robotics, ul. B. Krzywoustego 2, 44-100 Gliwice
Bibliografia
  • [1] Siostrzonek T., Chmielowiec K., Piątek K., Dutka M. Firlit A.: The use of multi-pulse systems in the power supply of hoisting machine drives to improve voltage parameters in mining plants, 2020 12th International Conference and Exhibition on Electrical Power Quality and Utilisation- (EPQU), 2020, pp.1-6,doi: 10.1109/EPQU50182.2020.9220301
  • [2] Varetsky Y., Hanzelka Z.: Filter characteristics in a DC drive power supply system, 2008 13th International Conference on Harmonics and Quality of Power, 2008, pp.1-6, doi: 10.1109/ICHQP.2008.4668842
  • [3] Gała M., Jagieła K., Kępiński M., Rak J.: Influence of highpower DC converters drives on operating parameters of induction machines, (In Polish) Zeszyty Problemowe – Maszyny Elektryczne, no. 76/2007, KOMEL, 2007, pp.35-40
  • [4] Czornik J., Haltof M.: Harmonic filters in converter drive systems, (In Polish) The Scientific Papers of Faculty of Electrical and Control Engineering Gdańsk University of Technology, vol.67, JDEE Scientific – Technology Conference Power Quality of Electricity Supply – joint responsibility of producers, distributors, consumers and prosumers, 2019,pp.33-38, doi: 10.32016/1.67.06
  • [5] Hanzelka Z.: Rozważania o jakości energii elektrycznej (V).Wyższe harmoniczne napięć i prądów (In Polish), Elektroinstalator 1/2002, 2002, pp.26-31
  • [6] Zobaa A. F.: Harmonic problems produced from the use of adjustable speed drives in industrial plants: case study, 2004 11th International Conference on Harmonics and Quality of Power (IEEE Cat. No.04EX951), 2004, pp.6-10, doi: 10.1109/ICHQP.2004.1409320
  • [7] Habrych M., Wisniewski G., Miedzinski B., Wosik J., Kozlowski A.:, Power loss due to high harmonics in power transformer when use for dc drive of hoisting machines, 2014 International Conference on Information Science, Electronics and Electrical Engineering, 2014, pp.2065-2070, doi: 10.1109/InfoSEEE.2014.6946287
  • [8] Izhar M., Hadzer C. M., Masri S., Idris S.: A study of the fundamental principles to power system harmonic, Proceedings. National Power Engineering Conference, PECon 2003, pp.225-232, doi: 10.1109/PECON.2003.1437448
  • [9] Schwanz D., Bollen M., Larsson A.: A review of solutions for harmonic mitigation, 2016 17th International Conference on Harmonics and Quality of Power (ICHQP), 2016, pp.30-35, doi: 10.1109/ICHQP.2016.7783422
  • [10] Rizk G., Salameh S., Kanaan H. Y., Rachid E. A.: Design ofpassive power filters for a three-phase semi-controlled rectifier with typical loads, 2014 9th IEEE Conference on Industrial Electronics and Applications, 2014, pp.590-595, doi: 10.1109/ICIEA.2014.6931233
  • [11] Marz M. B.: Harmonic simulations for filter design at a large industrial load, 2000 Power Engineering Society Summer Meeting (Cat. No.00CH37134), 2000, vol.2, pp.1080-1087, doi: 10.1109/PESS.2000.867528
  • [12] Campos B. P., Sousa L. A. R., Ribeiro P. F.: Mitigation ofharmonic distortion with passive filters, 2016 17th International Conference on Harmonics and Quality of Power (ICHQP), 2016, pp.646-651, doi: 10.1109/ICHQP.2016.7783315
  • [13] Pravitasari D., Firmansyah E., Haryono T.: Harmonic current elimination in industrial power systems, 2015 2nd InternationalConference on Information Technology, Computer, and Electrical Engineering (ICITACEE), 2015, pp.358-362, doi: 10.1109/ICITACEE.2015.7437829
  • [14] Nassif A., Xu W., Freitas W.: An investigation on the selection of filter topologies for passive filter applications, IEEE PES General Meeting, 2010, pp.1-1, doi: 10.1109/PES.2010.5588168
  • [15] Sanjay J. S., Misra B.: Power Quality Improvement for Non Linear Load Applications using Passive Filters, 2019 3rd International Conference on Recent Developments in Control, Automation & Power Engineering (RDCAPE), 2019, pp.585-589, doi: 10.1109/RDCAPE47089.2019.8979035
  • [16] Dovgun V., Egorov D., Temerbaev S.: Passive Filtering Systems for Multipulse Rectifiers, 2020 International Ural Conference on Electrical Power Engineering (UralCon), 2020, pp.235-239, doi: 10.1109/UralCon49858.2020.9216291
  • [17] Ho S., Lam C., Wong M.: Comparison among PPF, APF, HAPF and a combined system of a shunt HAPF and a shunt thyristor controlled LC, TENCON 2015 - 2015 IEEE Region 10 Conference, 2015, pp.1-6, doi: 10.1109/TENCON.2015.7373058
  • [18] Sachan R., Srivastava R.: Performance analysis of fixed shunt passive filters for harmonic mitigation, 2016 International Conference on Emerging Trends in Electrical Electronics & Sustainable Energy Systems (ICETEESES), 2016, pp.87-90, doi: 10.1109/ICETEESES.2016.7581357
  • [19] Das J. C.: Passive filters - potentialities and limitations, in IEEE Transactions on Industry Applications, vol.40, no.1, pp.232-241, Jan.-Feb. 2004, doi: 10.1109/TIA.2003.821666
  • [20] Matyjasek Ł., Matyjasek K.: Power factor correction systems for mining hoists with special consideration of STATCOM systems, (In Polish) The Scientific Papers of Faculty of Electrical and Control Engineering Gdańsk University of Technology, vol.67, JDEE Scientific – Technology Conference Power Quality of Electricity Supply – joint responsibility of producers, distributors, consumers and prosumers, 2019, pp.153-157, doi: 10.32016/1.67.31
  • [21] Mattavelli P.: Design aspects of harmonic filters for high-power AC/DC converters, 2000 Power Engineering Society Summer Meeting (Cat. No.00CH37134), 2000, vol.2, pp.795-799, doi: 10.1109/PESS.2000.867455
  • [22] Pogorelov A. V,: Improving Filter-Compensating Devices in Power Supply Systems of Mine Hoists, 2019 International Multi-Conference on Industrial Engineering and Modern Technologies (FarEastCon), 2019, pp.1-4, doi: 10.1109/FarEastCon.2019.8934157
  • [23] Kedra B.: Comparison of an active and hybrid power filter devices, 2014 16th International Conference on Harmonics and Quality of Power (ICHQP), 2014, pp.556-560, doi: 10.1109/ICHQP.2014.6842771
  • [24] Solanki J., Fröhleke N., Böcker J.: Implementation of Hybrid Filter for 12-Pulse Thyristor Rectifier Supplying High-Current Variable-Voltage DC Load, in IEEE Transactions on Industrial Electronics, vol.62, no.8, pp.4691-4701.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-84c51617-8f7e-4bd7-bdf9-a6cb7459b10f
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