Hybrid railway traction power supply

被引:0
|
作者
Valeriy, Kuznetsov [1 ]
Viktor, Sychenko [2 ]
Petro, Hubskyi [1 ]
Myamlin, Sergiy [3 ]
Yevhen, Kosariev [2 ]
Vitalij, Liashuk [2 ]
机构
[1] Railway Res Inst, Elect Power Div, Warsaw, Poland
[2] Dnipro Natl Univ Railway Transport, Dept Intelligent Power Supply Syst, UA-49010 Dnipro, Ukraine
[3] UKRAINIAN RAILWAY, Branch SEI, JSC UKRZALIZNYTSIA, UA-03038 Kiev, Ukraine
关键词
traction power system; voltage mode; distributed generation; amplification point; hybrid power supply system;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Modern requirements for traction DC power supply in the organization of high-speed movement are reduced to the need to provide a normalized voltage level of 2900 V on the pantograph of electric locomotives. The existing power supply system does not allow to provide the necessary mode of voltage at change of load and the necessary specific energy consumption, despite the considerable aggregate power of traction substations. The purpose of the work is to develop a hybrid traction system with the use of alternative generators of electricity. The article presents the algorithm of interaction of different types of generation when the traction load is changed. The developed hybrid power supply system for electric rolling stock allows to provide the necessary voltage level on electric locomotive pantograph and to reduce the range of its changes, which will allow to fulfill the necessary conditions for ensuring high- speed movement without changing the voltage in the traction line.
引用
收藏
页码:208 / 211
页数:4
相关论文
共 50 条
  • [21] Circulation Power Reduction Measures for Bilateral Power Supply of High-Speed Railway Traction Power Supply System
    Zhang L.
    Li X.
    Liang S.
    Jia Y.
    Han D.
    Zhongguo Tiedao Kexue/China Railway Science, 2020, 41 (05): : 127 - 135
  • [22] Quantitative Harmonic Amplification Analysis in Electric Railway Traction Power Supply Systems
    Yu, Jiahua
    Wu, Hexiang
    He, Fengguang
    Pan, Weiguo
    Zeng, Liyong
    Li, Zhaoyang
    RECENT ADVANCES IN ELECTRICAL & ELECTRONIC ENGINEERING, 2023, 16 (06) : 590 - 599
  • [23] Unified traction power supply mode for trunk railway and urban rail transit
    Li Q.
    Li, Qunzhan (lqz3431@263.net), 2018, Chinese Academy of Sciences (48): : 1179 - 1189
  • [24] Optimisation of rolling stock, timetable and traction power supply for an urban railway system
    Smulders, HWM
    Martins, JD
    Gonçalves, PG
    Stam, RTJ
    Urban Transport XI: URBAN TRANSPORT AND THE ENVIRONMENT IN THE 21ST CENTURY, 2005, : 207 - 216
  • [25] Discussion on DC and AC Power Quality Assessment in Railway Traction Supply Systems
    Delle Femine, A.
    Gallo, D.
    Landi, C.
    Luiso, M.
    2019 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE (I2MTC), 2019, : 694 - 699
  • [26] Determination of Electromagnetic Noise from a Power Supply Substation of Railway Traction Systems
    Nicolae, Petre-Marian
    Nicolae, Ileana-Diana
    Nuca, Iurie
    Nicolae, Marian-Stefan
    2022 IEEE INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY & SIGNAL/POWER INTEGRITY, EMCSI, 2022, : 619 - 624
  • [27] Energy storage traction power supply system and control strategy for an electrified railway
    Chen, Minwu
    Cheng, Yilin
    Cheng, Zhe
    Zhang, Diya
    Lv, Yabo
    Liu, Ruofei
    IET GENERATION TRANSMISSION & DISTRIBUTION, 2020, 14 (12) : 2304 - 2314
  • [28] System of Traction AC Power Supply with Catenary Supports Not Connected with a Railway Track
    Kosarev A.B.
    Kosarev B.I.
    Russian Electrical Engineering, 2019, 90 (06) : 421 - 427
  • [29] Modeling and Simulation for Traction Power Supply System of High-Speed Railway
    Han Zhengqing
    Zhang Yuge
    Liu Shuping
    Gao Shibin
    2011 ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (APPEEC), 2011,
  • [30] Education for the engineers of traction power supply division in East Japan Railway Company
    Takino, Toshiaki
    Iwakami, Tetsuro
    2014 INTERNATIONAL POWER ELECTRONICS CONFERENCE (IPEC-HIROSHIMA 2014 - ECCE-ASIA), 2014, : 817 - 820