Determination of the working energy capacity of the on-board energy storage system of an electric locomotive for quarry railway transport during working with a limitation of consumed power

Q2 Engineering Archives of Transport Pub Date : 2023-03-31 DOI:10.5604/01.3001.0016.2631
L. Kondratieva, A. Bogdanovs, L. Overianova, I. Riabov, S. Goolak
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引用次数: 5

Abstract

The use of specialized rail rolling stock which is used for transporting ore from the quarry to the crushing plant at mining enterprises is analyzed here. Electric locomotives with an asynchronous traction electric drive and an on-board energy storage system are considered for use. The calculated dependencies of the electric locomotive trac-tive power were analyzed and it was established that on flat sections of the track profile, the movement is carried out with a power that does not exceed 50% of the nominal one. The movement with the nominal power is carried out on the controlled uphill during the cargo half-passage. To ensure the necessary power for movement in such areas, the use of an on-board energy storage system is proposed, which should feed the traction system while limiting the power consumed from the catenary. This happens when the voltage on the pantograph drops to a minimum level. The aim of this work is to determine the on-board energy storage system parameters during the operation of the electric locomotive with limitation of the power consumed from the traction network. Mathemati-cal models of the energy exchange processes in the electric locomotive traction system have been developed. The criteria for comparing options for calculating the parameters of the on-board energy storage system have been proposed. The criteria take into account the reduction of energy consumption during movement, the efficiency of energy storage, and the complete use of the on-board energy storage system in terms of power and working energy capacity. Based on the calculation results, it was determined that the use of an energy storage device with a power of 3,540 kW and an operating energy capacity of 63.5 kWh provides a 10% reduction in energy consumption, which is being consumed while moving along the sample section of the road. The current that can be consumed by an electric locomotive with such parameters of the on-board energy storage system is limited by 600 A.
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采石场铁路运输电力机车在一定功率消耗条件下车载储能系统工作能量容量的确定
分析了矿山企业将矿石从采石场运送到破碎厂的专用轨道车辆的使用情况。考虑使用具有异步牵引电力驱动和车载储能系统的电力机车。对电力机车牵引功率的计算依赖关系进行了分析,确定了在平坦的轨道剖面上,电力机车牵引功率不超过标称功率的50%。在货物半通过过程中,以标称功率在受控上坡上进行运动。为了保证在这些区域运动所需的动力,建议使用车载储能系统,该系统应为牵引系统供电,同时限制接触网消耗的功率。当受电弓上的电压降至最低水平时,就会发生这种情况。本文的研究目的是在电力机车运行过程中,在限制牵引网络功率消耗的情况下,确定车载储能系统参数。建立了电力机车牵引系统能量交换过程的数学模型。提出了计算车载储能系统参数的选项比较准则。该标准考虑了运动过程中能耗的减少,能量存储的效率,以及在功率和工作能量容量方面完全使用车载储能系统。根据计算结果,确定使用功率为3540千瓦、运行能量容量为63.5千瓦时的储能装置,可以减少10%的能耗,而这些能耗是在沿着样本路段行驶时消耗的。车载储能系统在此参数下,电力机车可消耗的电流限制在600 A以内。
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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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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