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Electric Freight Rail Power System: Capacity Modelling and Simulation, A Statistical Methodology

机译:电动货运铁路动力系统:容量建模与仿真,一种统计方法

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摘要

The capacity of the power system is assessed as a function of the number of trains transiting per day, and of the average time delay between one service and the next. A stochastic element is introduced by randomly varying the time delay between consecutive trains. The random variation of the time-distribution of the trains produces a set of likely traffic scenarios. Each scenario presents a different loading profile to the power system. The response of the power system to train traffic is evaluated by considering the statistical frequency distribution of several electrical and thermal variables for each item of power plant. The risk of electrical parameters to exceed rated values is used to optimise the design of the power system. The advantage of this methodology is that it eliminates the need for a timetable, and that it drives the design of the power system by the estimate of the risk of exceeding rated values rather than by worst case scenarios: this leads to a considerable reduction of the sizing of plant, and thus to a cost saving in economical and environmental terms.
机译:电力系统的容量是根据每天行驶的火车数量以及一项服务与另一项服务之间的平均时间延迟的函数进行评估的。通过随机改变连续列车之间的时间延迟来引入随机元素。火车时间分布的随机变化产生了一组可能的交通场景。每种情况都为电力系统提供了不同的负载曲线。通过考虑电厂每个项目的几个电气和热变量的统计频率分布来评估电力系统对列车交通的响应。电气参数超过额定值的风险可用于优化电源系统的设计。这种方法的优势在于,它消除了对时间表的需求,并且通过估计超过额定值的风险而不是在最坏的情况下推动了电力系统的设计:这大大降低了运行时间。调整工厂规模,从而在经济和环境方面节省成本。

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