Hierarchical energy management of multi-train railway transport system with energy storages

Hrvoje Novak, M. Vašak, V. Lešić
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引用次数: 22

Abstract

Railway transport systems are complex technical systems that consume significant amounts of energy and are suitable for advanced energy management approaches to make them more proactive participants in the next generation electrical smart grids. In the considered smart railway system, each train is controlled to achieve minimum travel costs while maintaining the timetable and passengers comfort. Meanwhile, the cost of electricity can be quite different in time, depending whether it is sourced from another train in braking, local energy storages or from the electrical power grid. The higher-level railway transport coordination system is introduced here for trains coordination with respect to external grid conditions, routes conditions, timetable requirements and current position on the route. This work is focused on the problem of train driving through the area supplied by a single power supply station that comprises a local microgrid with energy storage components. A concept of hierarchical decomposition for coordination of microgrid energy management and on-route train energy consumption with the main goal of maximising the economic benefit is presented. It is shown that the concept is extendable on several trains driving through the same power supply area.
基于储能的多列铁路运输系统分层能量管理
铁路运输系统是复杂的技术系统,消耗大量的能源,适合采用先进的能源管理方法,使其更积极地参与下一代智能电网。在考虑的智能铁路系统中,每列火车都被控制以实现最低的旅行成本,同时保持时间表和乘客舒适度。与此同时,电力的成本在时间上可能会有很大的不同,这取决于它是来自另一列火车的制动、当地的能源储存还是来自电网。本文从外部网格条件、线路条件、时刻表要求和线路当前位置等方面介绍了更高层次的铁路运输协调系统。这项工作的重点是火车行驶通过由单个供电站供电的区域的问题,该供电站由一个带有储能组件的本地微电网组成。以经济效益最大化为主要目标,提出了微网能量管理与列车在轨能耗协调的层次分解概念。结果表明,该概念可扩展到多列火车通过同一供电区域。
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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