首页> 外文会议>2012 IEEE Industry Applications Society Annual Meeting. >Configure methodology of on-board super-capacitor array for recycling regenerative braking energy of URT vehicles
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Configure methodology of on-board super-capacitor 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

On-board energy storage system (ESS) is an important technical solution of energy-savings in urban rail transit (URT). On-board Energy storage array configure is a key issue. In this paper, the limitations of the capacity constrained configure method (C-Method), which is mainly adopted for configuring on-board Super-capacitor array (OSA), is studied firstly. A case study shows that the C-Method according to capacity match only would cause part of absorbed braking energy to be wasted. Thus configuring OSA for URT vehicles braking energy recovery should consider both power and capacity constraints. Considering the power and capacity constraints, a demanded mathematical model is established, then a power and capacity constrained configure method (P&C-Method) and configure procedure are proposed in the study. Example and simulation results based on a project parameters show that the OSA with the proposed P&C-Method can realize effective recovery of whole absorbed braking energy and have high energy-savings/weight ratio.
机译:车载能量存储系统(ESS)是城市轨道交通(URT)节能的重要技术解决方案。板载储能阵列配置是关键问题。本文首先研究了容量受限配置方法(C-Method)的局限性,该方法主要用于配置板载超级电容器阵列(OSA)。案例研究表明,仅根据容量匹配的C方法会浪费一部分吸收的制动能量。因此,为URT车辆配置OSA制动能量回收时应同时考虑功率和容量限制。考虑到功率和容量的约束,建立了所需的数学模型,然后提出了功率和容量受限的配置方法(P&C-Method)以及配置步骤。基于项目参数的实例和仿真结果表明,提出的P&C方法的OSA可以有效地回收全部吸收的制动能量,并且具有很高的节能/重量比。

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