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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Electrical Engineering >Peak Demand Cutting Strategy with an On-Board Energy Storage System in Mass Rapid Transit
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Peak Demand Cutting Strategy with an On-Board Energy Storage System in Mass Rapid Transit

机译:轨道交通车载储能系统的峰值需求削减策略

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摘要

An energy storage system (ESS) in electric railways can be installed on a train, at trackside, or at substations. The main purpose of the ESS application is to reduce energy demand and peak power with good voltage regulation. This paper presents a control strategy for efficient regenerative braking of a vehicle equipped with an on-board ESS (OBESS) and evaluates the effects on the energy consumption, voltage profile, and power drawn from substations and the OBESS during vehicle acceleration and braking. This proposed strategy is to store recovered braking energy into the OBESS and find appropriate positions to deliver its stored energy back in such a way that the peak demand of all the substations is cut. The Bangkok Transit System (BTS)-Sky Train Silom (Green) Line in Thailand is used as a case study. This system has a service distance of 13.649 km with 13 passenger stations and 7 traction substations. It employs 750-V DC rectifier substations to supply electric power through its 3rd rails. The results showed that the proposed strategy can cut the peak power at the substations approximately 75% and the overall energy consumption of the system can be reduced by 16%.
机译:电动铁路的储能系统(ESS)可以安装在火车上,轨道旁或变电站中。 ESS应用程序的主要目的是通过良好的电压调节来减少能量需求和峰值功率。本文提出了一种控制策略,用于对装有车载ESS(OBESS)的车辆进行有效的再生制动,并评估了在车辆加速和制动过程中,对变电站和OBESS的能耗,电压曲线和功率的影响。提出的策略是将回收的制动能量存储到OBESS中,并找到合适的位置以将其存储的能量回送,从而降低所有变电站的峰值需求。案例研究以泰国的曼谷公交系统(BTS)-空中列车Silom(绿色)线为例。该系统的服务距离为13.649 km,具有13个客运站和7个牵引变电站。它使用750-V直流整流器变电站通过其第三条轨道供电。结果表明,所提出的策略可以将变电站的峰值功率降低约75%,并且系统的总体能耗可以降低16%。

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