Title :
System of power supply and oscillating pulse current synchronous drive in power network
Author :
Jankunas, V. ; Senulis, A. ; Guseinoviene, E. ; Seker, Serhat ; Akinci, Tahir Cetin
Author_Institution :
Klaipeda Univ., Klaipeda, Lithuania
Abstract :
There are a number of electrical drives with oscillatory driven mechanisms. As a result it is possible to use oscillating movement electrical drives there. These drives create ineligible reactive power, therefore it is required to provide conductors with the bigger cross-section, to design reactive energy storage devices. Reactive power is objectionable in electrical power network. Thus, in order to ensure the best work of oscillating drive the necessity for searching of reactive power reduction or its use methods occurs. The aim of the research is to examine pulsed power supply and oscillating movement pulse current synchronous drive system, in order to minimize the reactive power usage from power supply network and increase drive efficiency. To achieve this purpose pulse power supply and oscillating movement drive system mathematical model was designed, the influence of selected pulsed power supply to oscillating movement, drive performance indicators was determined as well.
Keywords :
electric drives; equivalent circuits; network analysis; oscillations; pulsed power supplies; reactive power; synchronous motor drives; drive performance indicators; electrical power network; oscillating movement drive system mathematical model; oscillating movement electrical drives; oscillating movement pulse current synchronous drive system; oscillatory driven mechanisms; power supply network; pulse power supply mathematical model; pulsed power supply; reactive energy storage devices; reactive power reduction; reactive power usage; Mathematical model; Optical switches; Power supplies; Reactive power; Resistance; Springs; Windings; oscillating drive; power factor; pulse power supply; reactive energy; special electrical machines;
Conference_Titel :
Ecological Vehicles and Renewable Energies (EVER), 2014 Ninth International Conference on
Conference_Location :
Monte-Carlo
Print_ISBN :
978-1-4799-3786-8
DOI :
10.1109/EVER.2014.6844066