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Configure Methodology of Onboard Supercapacitor Array for Recycling Regenerative Braking Energy of URT Vehicles

机译:配置车载超级电容器阵列的方法来回收URT车辆的再生制动能量

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摘要

Onboard energy storage system (ESS) is an important energy-saving technology in urban rail transit. The key issue of the ESS is the array configuration. In this paper, a new array configuration methodology is developed. First, the limitations of the capacity-constrained configuration method, which is mainly adopted for configuring the onboard supercapacitor array (OSA), are investigated. Second, a mathematical model of the OSA is developed taking into account power and capacity constraints so that the absorbed braking energy can be recovered. Finally, a power- and capacity-constrained configuration methodology (P&C-Method) is proposed. Digital simulation studies are conducted, and the results show that the OSA with the proposed P&C-Method can realize the effective energy recovery of the whole absorbed braking energy and have a high energy-saving effect/weight ratio.
机译:车载储能系统(ESS)是城市轨道交通中一项重要的节能技术。 ESS的关键问题是阵列配置。在本文中,开发了一种新的阵列配置方法。首先,研究了容量受限配置方法的局限性,该方法主要用于配置板载超级电容器阵列(OSA)。其次,考虑到功率和容量限制,开发了OSA的数学模型,以便可以回收吸收的制动能量。最后,提出了一种功率和容量受限的配置方法(P&C-Method)。进行了数字仿真研究,结果表明,采用本文提出的P&C方法的OSA可以实现整个吸收制动能量的有效能量回收,并且具有较高的节能效果/重量比。

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