Title :
Improved RTGC system with voltage compensation converter to reduce fuel consumption
Author :
Bayasgalan, D. ; Ryu, J.S. ; Choi, Y.M. ; Lee, S.H. ; Han, D.H. ; Lee, Y.J. ; Choi, H.R. ; Choe, G.H.
Author_Institution :
Inverter R&D Center, Seoho Electr. Corp., Anyang, South Korea
Abstract :
This paper presents improved Rubber Tyred Gantry Crane system with high power voltage compensated converter to save the fuel consumption. The RTGC system requires the power from diesel-engine. Significant fuel savings by reducing the engine speed can be achieved, because all of operation modes except hoisting are required lower power than rated value of engine. When low speed operation output voltage of generator is decrease until acceptable range of motor driver inverters and auxiliary load supplier. According to power demand engine speed is varying from 20 to 60Hz, and voltage is varying between 210Vac and 480Vac. When idle mode or low power operation dc/dc converter operates by constant output voltage control and inverters dc site voltage is compensated by it. This paper proposed 3-phase interleaved boost converter which has the same structure as the commercially available 3-phase inverter and current sharing capability. 400kW interleaved converter is designed and a performance of converter is evaluated through several experiments with a RTGC system. That system can cut down fuel consumption by 36% and 21.3% at idle and unidirectional load operation.
Keywords :
DC-DC power convertors; cranes; diesel engines; diesel-electric generators; invertors; tyres; voltage control; 3-phase interleaved boost converter; 3-phase inverter; RTGC system; auxiliary load supplier; constant output voltage control; current sharing capability; dc-dc converter; diesel engines; engine speed; frequency 20 Hz to 60 Hz; fuel consumption reduction; idle mode; inverters dc site voltage; motor driver inverters; power 400 kW; power demand; rubber tyred gantry crane; unidirectional load operation; voltage 210 V to 480 V; voltage compensation converter; Containers; Engines; Fuels; Generators; Inverters; Resistors; Voltage control;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2012 IEEE
Conference_Location :
Raleigh, NC
Print_ISBN :
978-1-4673-0802-1
Electronic_ISBN :
978-1-4673-0801-4
DOI :
10.1109/ECCE.2012.6342415