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DC Traction Power Supply System Based on Modular Multilevel Converter Suitable for Energy Feeding and De-icingOACSTPCDEI

DC Traction Power Supply System Based on Modular Multilevel Converter Suitable for Energy Feeding and De-icing

英文摘要

A novel DC traction power supply system suitable for energy feeding and de-icing is proposed in this paper for an urban rail transit catenary on the basis of the full bridge submodule(FBSM)modular multilevel converter(MMC).The FBSM-MMC is a novel type of voltage source converter(VSC)and can directly control the output DC voltage and conduct bipolar currents,thus flexibly controlling the power flow of the urban rail transit catenary.The proposed topology can overcome the inherent disadvantages of the output voltage drop in the diode rectifier units,increase the power supply distance and reduce the number of traction substations.The flexible DC technology can coordinate multiple FBSM-MMCs in a wide area and jointly complete the bidirectional control of catenary power flow during the operation of the electric locomotive,so as to realize the local consumption and optimal utilization of the recovered braking energy of the train.In addition,the FBSM-MMCs can also adjust the output current when the locomotive is out of service to prevent the catenary from icing in winter.The working modes of the proposed topology are illustrated in detail and the control strategy is specially designed for normal locomotive operations and catenary de-icing.Simulation cases conducted by PSCAD/EMTDC validate the proposed topology and its control strategy.

Lingxi Hou;Shuqing Zhang;Yingdong Wei;Xiaoqian Li;Qirong Jiang;Mingrui Li;Weirui Li

Department of Electrical Engineering,Tsinghua University,Beijing 100084,China

DC traction power supply systemde-icing for catenaryenergy feedingmodular multilevel converter based on full-bridge submodules(FBSM-MMC)urban rail transit

《中国电机工程学会电力与能源系统学报(英文版)》 2024 (002)

649-659 / 11

This work was supported in part by National Key Research and Development Program of China(2017YFB1200801)and Continuous Co-phase Traction Power System based on Static Power Converter(20192001148).

10.17775/CSEEJPES.2020.02260

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