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Techno-economic design methodology of hybrid energy systems connected to electrical grid: An application of hybrid railway power substation

机译:电网混合能源系统的技术经济设计方法:混合铁路变电站的应用

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The railway operator would like to increase train frequency in order to satisfy demand for passenger flow growth in some lines. However the railway power substations (RPSs) are approaching their rating capacities, and have difficulty to supply more. A concept investigated by SNCF is a hybrid railway power substation (HRPS). Renewable energy systems and energy storages are integrated in the RPS to supply power. This paper presents the methodology based on simulation tools to design a HRPS by the electrical infrastructure railway engineering team. The first step uses a temporal power balance and economics linear formulation to optimize the HRPS global design and the energy management (for a time horizon of one year with time step of one hour). In the second step, the energetic macroscopic representation (EMR) is adopted to validate the HRPS global design with the corresponding control and the real time energy management system (time step of one second and simulation time of one week). The case study of Sarry railway power substation reveals that around 9% of the electricity bill can be reduced with the proposed hybridization. (C) 2018 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:铁路运营商希望增加火车班次,以满足某些线路对客流增长的需求。然而,铁路变电站(RPS)接近其额定容量,并且难以提供更多电力。 SNCF研究的概念是混合铁路变电站(HRPS)。可再生能源系统和储能装置集成在RPS中以供电。本文介绍了基于仿真工具的方法,以由电气基础设施铁路工程团队设计HRPS。第一步使用时间动力平衡和经济学线性公式来优化HRPS全局设计和能源管理(时间范围为一年,时间步长为一小时)。第二步,采用高能宏观表示法(EMR)通过相应的控制和实时能量管理系统(一秒钟的时间步长和一星期的仿真时间)来验证HRPS全局设计。 Sarry铁路变电站的案例研究表明,通过提出的混合动力,可以减少约9%的电费。 (C)2018国际模拟数学与计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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