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2023, 04, No.172 7-14
Power Analysis of Wireless Charging Trams with Different Station Distance
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DOI: 10.16599/j.cnki.1009-4687.2023.04.008
Published:   2023-12-15
Publication Date:   2023-12-15
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Abstract:

Wireless charging trams have no contact with the traditional network.They adopt a novel technology which combines wireless charging and on-board energy to provide electricity for overall consumption Because of the complexity of working conditions and the high power of electricity supplement of wireless charging trams, so one focus of the energy management strategy is to control the distribution of energy and power reasonably to guarantee that the vehicle could run smoothly in different conditions.In this paper, basic energy consumption of the trolleybus in operation is analyzed, and basic requirements for energy storage and off-line ratio are proposed. Based on a 2M2T100% low floor modern tram, theoretical analyses were carried out, and the on-board energy storage capacity and the capacity of wireless power transmission system were configured with different station distance.

References

[1] JIAN C,EMADI A.A new battery/Ultracapacitor hybrid energy storage system for electric,Hybrid,and plug-in Hybrid Electric Vehicles[J].IEEE Transactions on Power Electronics,2011,27(1):122-132.

[2] CHEN B,GAO Y,EHSANI M,et al.Design and control of a ultracapacitor boosted hybrid fuel cell vehicle.In Proc[C]//IEEE Vehicle Power and Propulsion Conf.VPPC ’09,2009:696-703.

[3] BAUMAN J,KAZERANI M.A Comparative Study of Fuel-Cell–Battery,Fuel-Cell–Ultracapacitor,and Fuel-Cell–Battery–Ultracapacitor Vehicles[J].IEEE Transactions on Vehicular Technology,2008,57(2):760-769.

[4] CHENG Y,MIERLO J V,LATAIRE P,et al.Research and test platform for hybrid electric vehicle with the super capacitor based energy storage[C]//In 2007 European Conference on Power Electronics and Applications,EPE,2007.

[5] TTOUNTHONG P,SETHAKUL P,RAEL S,et al.Control of fuel cell/battery/supercapacitor hybrid source for vehicle applications[C]//In Proc.IEEE Int.Conf.Industrial Technology ICIT 2009,2009:1-6.

[6] FERREIRA A A,POMILIO J A,SPIAZZI G,et al.Energy management fuzzy logic supervisory for electric vehicle power supplies system[J].IEEE Transactions on Power Electronics,2008,23(1):107-115.

[7] 王俊.基于超级电容储能的新型有轨电车供电系统设计研究[D].成都:西南交通大学,2015.

[8] CHENG L,WANG W,WEI S,et al.An improved energy management strategy for hybrid energy storage system in light rail vehicles[J].Energies,2018,11(2):423.

[9] 石庆升,张承慧,崔纳新.新型双能量源纯电动汽车能量管理问题的优化控制[J].电工技术学报,2008,23(8):137-142.

[10] 诸斐琴,杨中平,林飞,等.基于加速时间预测的现代有轨电车储能系统能量管理与容量配置优化研究[J].电工技术学报,2017,32(23):158-166.

[11] 陈昌松,段善旭,殷进军,等.基于发电预测的分布式发电能量管理系统[J].电工技术学报,2010,25(3):150-156.

[12] 吴冠男,张明理,徐建源,等.考虑抗扰性能的风电混合储能系统协调控制策略研究[J].电力系统保护与控制,2017,45(22):164-169.

[13] 柴炜,李征,蔡旭,等.基于使用寿命模型的大容量电池储能系统变步长优化控制方法[J].电工技术学报,2016,31(14):58-66.

[14] 黄美婷.基于动态规划的能量管理策略研究[D].北京:北京交通大学,2016.

[15] 张希,米春亭.车辆能量管理:建模、控制与优化[M].北京:机械工业出版社,2013.

Basic Information:

DOI:10.16599/j.cnki.1009-4687.2023.04.008

China Classification Code:U482.1

Citation Information:

[1]ZHANG Jianmin,YAN Yuan,HAO Wenmei.Power Analysis of Wireless Charging Trams with Different Station Distance[J].Vehicle & Power Technology,2023,No.172(04):7-14.DOI:10.16599/j.cnki.1009-4687.2023.04.008.

Published:  

2023-12-15

Publication Date:  

2023-12-15

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