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Power management in co-phase traction power supply system with super capacitor energy storage for electrified railways 被引量:4
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作者 Xiaohong Huang Qinyu Liao +2 位作者 Qunzhan Li Sida Tang Ke Sun 《Railway Engineering Science》 2020年第1期85-96,共12页
Increasing railway traffic and energy utilization issues prompt electrified railway systems to be more economical,efficient and sustainable.As regenerative braking energy in railway systems has huge potential for opti... Increasing railway traffic and energy utilization issues prompt electrified railway systems to be more economical,efficient and sustainable.As regenerative braking energy in railway systems has huge potential for optimized utilization,a lot of research has been focusing on how to use the energy efficiently and gain sustainable benefits.The energy storage system is an alternative because it not only deals with regenerative braking energy but also smooths drastic fluctuation of load power profile and optimizes energy management.In this work,we propose a co-phase traction power supply system with super capacitor(CSS_SC)for the purpose of realizing the function of energy management and power quality management in electrified railways.Besides,the coordinated control strategy is presented to match four working modes,including traction,regenerative braking,peak shaving and valley filling.A corresponding simulation model is built in MATLAB/Simulink to verify the feasibility of the proposed system under dynamic working conditions.The results demonstrate that CSS_SC is flexible to deal with four different working conditions and can realize energy saving within the allowable voltage unbalance of 0.008%in simulation in contrast to 1.3%of the standard limit.With such a control strategy,the performance of super capacitor is controlled to comply with efficiency and safety constraints.Finally,a case study demonstrates the improvement in power fluctuation with the valley-to-peak ratio reduced by 20.3%and the daily load factor increased by 17.9%. 展开更多
关键词 Electrified railway Co-phase traction power supply system Energy storage Peak SHAVING VALLEY FILLING power quality super capacitor
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沈阳市浑南新区现代有轨电车工程特点 被引量:10
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作者 王宏伟 谢传军 +1 位作者 朱文杰 殷立达 《都市快轨交通》 北大核心 2013年第5期10-14,共5页
沈阳市浑南新区现代有轨电车一期工程是国内首次以BT模式建设的现代有轨电车轨道交通线网。作为全运会配套工程,该项目充分结合沈阳市"大浑南"建设发展规划,创造性地采用59R2槽型轨路中敷设无缝线路、100%低地板现代有轨电车... 沈阳市浑南新区现代有轨电车一期工程是国内首次以BT模式建设的现代有轨电车轨道交通线网。作为全运会配套工程,该项目充分结合沈阳市"大浑南"建设发展规划,创造性地采用59R2槽型轨路中敷设无缝线路、100%低地板现代有轨电车、柔性牵引网+快充超级电容供电等多种新材料、新产品,在工程施工过程中发明和优化了槽型轨及槽型轨道岔铺设、槽型轨铝热焊、槽型轨与P50轨和P60轨异型接头焊接、小半径曲线预弯、基于CPⅢ网的槽型轨无砟轨道精调系统等多种新型工艺,形成和完善了现代有轨电车系统集成技术,并对国内现代有轨电车工程在规划设计、建设模式和项目管理等方面做了较有意义的尝试。 展开更多
关键词 沈阳市浑南新区 BT模式 现代有轨电车 槽型轨 100%低地板现代有轨电车 小半径曲线预弯 柔性牵引网+超级电容供电
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