COMPONENTS OF THE TOTAL POWER LOSSES IN THREE-PHASE ENERGY SUPPLY SYSTEMS WITH SYMMETRIC SINUSOIDAL VOLTAGE SOURCE

Authors

  • George G. Zhemerov National Technical University "Kharkiv Polytechnic Institute", Ukraine
  • D. V. Tugay O.M. Beketov National University of Urban Economy in Kharkiv, Ukraine

DOI:

https://doi.org/10.20998/2074-272X.2015.4.05

Keywords:

energy supply system, power additional losses, the minimum possible losses, Matlab-model of three-phase energy supply system

Abstract

Purpose. Three-phase energy supply system with a symmetrical resistive load operates in mode with the highest possible efficiency in a case of zero instantaneous reactive power and the absence of pulsations instantaneous active power. When load parameters are changed, three-phase energy supply system starts to operate in a mode with additional energy losses. The goal of the paper is to determinate the relations between the components of additional losses and their rezone. Methodology. We have applied the modern theory of instantaneous active and reactive power, the graphical filling complex branched energy supply system of simplified design scheme, the theory of electrical circuits, computer Matlab-simulation. Results. We have developed an universal relation to determine the components of total power loss in the three-phase supply systems with symmetrical three-phase sinusoidal voltage source and any possible load. Further verification of this relation in the Matlab-model of three-phase energy supply system shows its high accuracy. Originality. For the first time, we have carried out relation between RMS reactive and RMS active power instantaneous pulsation and the corresponding components of additional losses. Consequently it becomes possible to offer a unique method of weighting evaluation. Practical value. We have developed position for detecting the causes of additional losses in three-phase supply systems with symmetrical sinusoidal voltage source, as well as to substantiate the correctness of the choice of filter-compensating device. We have developed a Matlab-model which allows to investigate the energy efficiency of three-phase energy supply system and to calculate the components of additional power losses of any possible reasons for their occurrence.

Author Biography

George G. Zhemerov, National Technical University "Kharkiv Polytechnic Institute"

д.т.н., профессор, кафедра "Промышленная и биомедицинская электроника"

References

Akagi H., Kanazawa Y., Nabae A. Generalized theory of the instantaneous power in three phase circuits. Int. Power Electronics Conf., Tokio, Japan, 1983, pp.1375-1386.

Akagi H., Kanazawa Y., Nabae A. Instantaneous reactive power compensations comprising switching devices without energy storage components. IEEE Transactions on Industry Applications, 1984, vol.IA-20, no.3, рр. 625-630. doi:10.1109/tia.1984.4504460.

Peng F.Z., Lai J.-S. Generalized instantaneous reactive power theory for three–phase power systems. IEEE Transactions on Instrumentation and Measurement, 1996, vol.45, no.1, рр. 293-297. doi:10.1109/19.481350.

Kim H., Akagi H. The instantaneous power theory based on mapping matrices in three–phase four–wire systems. Proceedings of Power Conversion Conference – PCC’97, Nagaoka, Japan, 1997, pp. 361-366. doi:10.1109/pccon.1997.645639.

Zhemerov G.G., Tugay D.V. The instantaneous and average active and reactive power in linear circuits with sinusoidal voltages. Visnyk NTU «KhPІ»Bulletin of NTU «KhPІ», 2004, no.43, pp. 153-160. (Rus).

Bronshteyn I.N., Semendyayev K.A. Spravochnik po matematike dlya inzhenerov i uchashchikhsya vuzov [Mathematical handbook for engineers and university students]. Moscow, Nauka Publ., 1986. 723 p. (Rus).

Zhemerov G.G., Il'ina O.V., Tugay D.V. Energy-saving effect ripple compensation of instantaneous active power. Tekhnichna elektrodynamika. Tem. vypusk «Silova elektronіka i energoefektivnіst» – Technical electrodynamics. Special Issue «Power electronics & energy efficiency», 2006, vol.4, pp. 22-27. (Rus).

Zhemerov G.G., Tugay D.V. Energy and power in power supply systems with semiconductor converters and energy storage. Elektrotekhnika i elektromekhanikaElectrical engineering & electromechanics, 2014, no.1, pp. 45-57. (Rus).

Zhemerov G.G., Il'ina N.A., Il'ina O.V., Koval'chuk O.I., Sokol E.I. Efficiency three-phase four-wire power supply system with an asymmetric load. Tekhnichna elektrodynamika. Tem. vypusk «Silova elektronіka i energoefektivnіst» – Technical electrodynamics. Special Issue «Power electronics & energy efficiency», 2006, vol.1, pp. 22-31. (Rus).

Zhemerov G.G., Tugay D.V. Power losses and reactive power in three-phase power supply systems with symmetrical sinusoidal voltage source. Energosberezhenie. Energetika. Energoaudit – Energy saving. Power engineering. Energy audit, 2014, no.9(127), pp. 12-23. (Rus).

Published

2015-08-28

How to Cite

Zhemerov, G. G., & Tugay, D. V. (2015). COMPONENTS OF THE TOTAL POWER LOSSES IN THREE-PHASE ENERGY SUPPLY SYSTEMS WITH SYMMETRIC SINUSOIDAL VOLTAGE SOURCE. Electrical Engineering & Electromechanics, (4), 28–34. https://doi.org/10.20998/2074-272X.2015.4.05

Issue

Section

Electrotechnical complexes and Systems