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Monitoring of Selected Energy Parameters in the Supply System of a Model Vibratory Unit

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the results of selected energy parameters calculations, carried out for the recorded values of instantaneous voltages and currents in the three-phase power supply of the model vibratory unit. The parameters were the values of active and apparent power taken from the drive consisting of two electric motors supplied by the inverter for selected frequency settings and directly from the power grid. In addition, calculations of tgφ power factor values were made to evaluate the compensation of reactive power consumption in the tested power systems. Measurements and calculations lead to the conclusion that if the frequency of the inverter output voltage rises, the active and apparent power consumed by the model vibratory drive unit increases. The active and apparent power for setting the output frequency of the inverter from 50 Hz was less than the active and apparent power taken by the model vibratory unit that was powered directly from the power grid. The power factor tgφ in the power supply system was approximately 6, except one case (f = 30 Hz).
Rocznik
Strony
145--150
Opis fizyczny
Bibliogr. 15 poz., fot., rys., wykr.
Twórcy
  • AGH – University of Science and Technology, Faculty of Foundry Engineering Kraków, Poland
  • AGH – University of Science and Technology, Faculty of Foundry Engineering Kraków, Poland
Bibliografia
  • [1] Dańko, J., Kamińska, J. & Skrzyński, M. (2013). Reclamation of spent moulding sands with inorganic binders in the vibratory reclaimer REGMAS. Archives of Metallurgy and Materials. 3(58), 993-996.
  • [2] Polzin, H., Nitsch, U., Tilch, W. & Flemming, E. (1997). Regenerierung anorganisch gebundener Altsande mit einer mechanisch arbeitender Pilotanlage. Gieserei-Praxis, 23/24, 500-507.
  • [3] Boenisch, D. (1990). Reclamation of spent used sands containing bentonite. Guidelines for an economical leading to minimized waste. Giesserei. 77(19), 602-609.
  • [4] Integrated Pollution and Control. Reference Document on the Best Available Techniques in the Smitheries and Foundries Industry. European Commission. May, 2005.
  • [5] Dianjie, I., Linling, S., Dong, E. (2010). Reclamation process and equipment of used of self hardening sand. In Proceedings of 69th World Foundry Congress, 16-20 October 2010, (pp. 665-673). Hangzhou China.
  • [6] Industrial vibrators. Retrieved June 04, 2017, from http:// www.wamgroup.com/en-GB/corporate/Family/405/ Industrial-Vibrators.
  • [7] Variable frequency drives. Retrieved June 05, 2017, from http://www.lsis.com/usa.
  • [8] Ziółkowski, E. (2010). Monitoring of the supply system of electrical foundry equipment. Archives of Foundry Engineering. 10(spec.2), 169-172.
  • [9] IEEE standard definitions for the measurement of electric power quantities under sinusoidal, nonsinusoidal, balanced and unbalanced conditions. IEEE 1459-2010.
  • [10] Miller, J.E. (1982). Reactive power control in electric systems. John Willey & Sons.
  • [11] Abur, A., Expósito, A.G. (2004). Power System State Estimation: Theory and Implementation. CRC Press.
  • [12] Zieliński, T.P. (2007). Digital signal processing: from theory to applications. (2nd ed.). Warszawa: WKiŁ.
  • [13] Czarnecki, L.S. & Halley, P.M. (2014). Unbalanced power in four-wire systems and its reactive compensation. IEEE Trans. on Power Delivery. 30(1), 53-63.
  • [14] Power quality analyzer. Retrieved June 05, 2017, from http://www.kew-ltd.co.jp/en/products/005003.
  • [15] Ziółkowski, E., Smyksy K., Bień A. (2016). Monitoring power supply systems of electric foundry devices using recorder of voltage and current instantaneous values. In M. Górny, B. Grabowska, D. Gurgul (Ed.), Nauka i technika w inżynierii procesów odlewniczych. Kraków: AKAPIT, pp. 101-106.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d78b4fbb-1837-41fa-9cea-921f4ff11c96
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