In order to reasonably control the charging/ discharging of the energy storage system and maximize the recovery of regenerative braking energy, this paper proposes a dynamic charging/discharging threshold strategy based on fuzzy logic control. The effects of train operation state, SOC and current of supercapacitors are considered comprehensively. And the effectiveness of the control strategy is validated by taking the Beijing Metro Batong Line as an example. The results show that the output energy of the rectifier unit decreases by 14% and the cumulative output energy of the supercapacitors increases by 23.7% after adding the fuzzy logic controller.


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    Title :

    Research on Energy Management Strategy of Supercapacitor Energy Storage System in Urban Rail Transit Based on Fuzzy Logic Control


    Contributors:
    Xin, Yue (author) / Yang, Zhongping (author) / Lin, Fei (author) / Zhu, Feiqin (author)


    Publication date :

    2019-05-01


    Size :

    416005 byte




    Type of media :

    Conference paper


    Type of material :

    Electronic Resource


    Language :

    English




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