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Comparative analysis of conventional diesel-electric and hypothetical battery-electric heavy haul locomotive operation in terms of fuel savings and emissions reduction potentials

机译:在燃料节约和排放减少电位方面,传统柴油电和假设电池 - 电力重式运作的比较分析

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摘要

The paper considers a novel approach to heavy-haul of railway freight by means of combined operation of conventional diesel-electric and battery-electric locomotives either in single or joint (tandem) operation. A backward-looking quasi-static model of a battery-electric locomotive is proposed, based on the undercarriage of a decommissioned conventional diesel-electric locomotive equipped with a sufficiently sized battery energy storage system. In order to facilitate power flow control from the battery-electric locomotive and to avoid deep battery discharges a suitable control rule is introduced aimed at modulating the driver power (throttle Notch) command in order to maintain the battery state-of-charge above the safe lower limit during discharging. The effectiveness of the proposed approach has been verified by means of simulations for the considered mountainous railway route driving scenario, including realistic railway track slope and speed limitations. The results show that between 22% and 30% fuel cost savings may be achieved, along with reduced emissions of exhaust gases by using the proposed battery-electric locomotive in combination (tandem) with the conventional diesel-electric one. (c) 2021 Elsevier Ltd. All rights reserved.
机译:本文考虑了通过在单个或关节(串联)操作中的传统柴油电动电机和电池电源机车的综合操作来实现一种新颖的铁路货运方法。基于配备有足够大小的电池储能系统的退役的传统柴油电机的底架,提出了一种电池电动机车的后视对准模型。为了便于从电池电动机车的电力控制和避免深电池放电,旨在调制驱动器电源(油门缺口)命令的合适的控制规则,以便将电池充电的电池高于安全放电期间下限。通过考虑的山区铁路路线驾驶场景的模拟验证了所提出的方法的有效性,包括现实的铁路轨道坡度和速度限制。结果表明,可以实现22%至30%的燃料成本节省,以及通过使用常规柴油电动电动组合(串联)的所提出的电池电动机来降低废气排放。 (c)2021 elestvier有限公司保留所有权利。

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