Influence of electricity disconnections on electric drives of industrial machines and mechanisms

Authors

  • O. Sinyavsky National University of Life and Environmental Sciences of Ukraine image/svg+xml
  • V. Savchenko National University of Life and Environmental Sciences of Ukraine image/svg+xml
  • D. Kabanov National University of Life and Environmental Sciences of Ukraine image/svg+xml

DOI:

https://doi.org/10.31548/energiya2022.02.033

Abstract

Disconnection of consumers from the power supply leads to losses from disruption of technological processes, long downtime and production of defective products, reducing the service life of electrical equipment and appliances, increasing costs and losses of electricity, emergencies.

Currently in Ukraine, power outages reach up to 10 % of the total time of technological processes during the year and more.

Power outages cause frequent starts and braking of the motor. At a significant frequency of the induction motor, losses in transients cause its intense heating.

 The aim of the study was to establish the effect of power outages on the temperature of the drive electric motor of industrial machines and mechanisms.

A study of the impact of power outages on energy losses and thermal regime of the electric motor was conducted. The dependences of energy losses and allowable frequency of motor starts on the number of outages are determined.

It is established that frequent power outages cause an increase in energy losses, which are directly proportional to the frequency of outages. At the same time the admissible frequency of switching on of the electric motor decreases in proportion to quantity of shutdowns.

Key words: power outage, electric drive, energy losses, motor switching frequency

References

Voitiuk, D. H., Lysenko, V. P., Martynenko, I. I. et al (2004). Vplyv yakosti elektroenerhii na funktsionuvannia spozhyvachiv u silskomu hospodarstvi [The impact of electricity quality on the functioning of consumers in agriculture]. Elektryfikatsiia ta avtomatyzatsiia silskoho hospodarstva, 1(6), 3–12.

Lysenko, V. P., Kozyrskyi, V. V., Hladkyi, A. M., Skrypnyk, A. M. (2005). Stan elektrychnykh merezh ta nadiinist elektropostachannia silskohospodarskoho vyrobnytstva [The state of electrical networks and the reliability of electricity supply to agricultural production]. Elektryfikatsiia ta avtomatyzatsiia silskoho hospodarstva, 2(11), 3-12.

Johnson, Daniel O., Hassan, Kabiru A. (2016). Issues of Power Quality in Electrical Systems. International Journal of Energy and Power Engineering, 5 (4), 148-154.

Mirošević, M., Maljković, Z., Gašparac, I. (2011). Effects of interruption in power supply of induction motors in isolated electrical grid. International Aegean Conference on Electrical Machines and Power Electronics and Electromotion, Joint Conference, 732 – 735.

Sinyavsky O. Yu., Savchenko V. V. (2017). Osnovy elektropryvoda [Basics of electric drive]. Kyiv: TsP «Komprynt», 598.

Published

2022-06-11

Issue

Section

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