Equipping suburban diesel–electric multiple unit with a hybrid power unit

Ievgen Riabov, Liliia Overianova, Dmytro Iakunin, Volodymyr Neshcheret, Kostiantyn Ivanov
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Abstract

Improving the competitiveness of railway passenger transport requires low fuel and energy resource expenses. A promising direction in this regard is using energy storage in the traction systems of autonomous rolling stock. The paper considers the use of energy storage in the traction system of a diesel train for suburban transport. The modeling of a diesel train movement is carried out to determine the parameters of movement and consumption of fuel and energy resources. The movement of a diesel train on the Liubotyn-Boromlya section is considered. Three options for using an energy storage device in the traction system of a diesel train are investigated. It is established that the energy accumulation in the on-board storage device is 25 % of the energy consumed for traction. According to the results of the calculations, it was determined that using an energy storage device reduces fuel consumption by 22…28 %. In the case of charging the energy storage device of the plug-in traction system, the reduction in the cost of fuel and energy resources is 36.5…40.4 %. According to the study results, it is predicted that using a plug-in traction system is a priority for diesel trains engaged in suburban transport.
为郊区柴油-电力复合机组配备混合动力装置
提高铁路客运竞争力需要降低燃料和能源费用。在这方面,一个有前途的方向是在自动轨道车辆的牵引系统中使用能量存储。本文研究了在郊区交通柴油列车牵引系统中储能的应用。对柴油机列车的运动进行了建模,以确定其运动参数以及燃料和能源的消耗。考虑了一列柴油列车在柳博亭-博罗姆利亚段的运动。研究了在柴油机牵引系统中使用储能装置的三种方案。确定了在车载存储装置中积累的能量为牵引所消耗能量的25%。根据计算结果,确定使用储能装置可减少燃料消耗22…28%。在对插电式牵引系统的储能装置充电的情况下,燃料和能源成本降低了36.5%…40.4%。根据研究结果,预测用于郊区交通的柴油列车将优先采用插电式牵引系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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