地铁牵引供电系统全双向变流装置应用方案研究

Application Scheme of Full Bi-directional Converters in Metro Traction Power Supply Systems

  • 摘要:
    目的 在国内城市轨道交通工程中,双向变流装置的应用尚处于推广阶段。各地铁公司对双向变流装置的设置方案做了很多有益探索,但是尚未形成行业广泛共识的设置方案。尤其是,在每座牵引变电所设置两套双向变流装置方案的应用案例较少,国内尚无投运线路,且其供电可靠性略低,因此需要系统性研究全双向变流装置的应用方案。
    方法 调研了双向变流装置在国内外的应用情况,并对双向变流装置设置方案进行经济技术比选。研究了全双向变流装置条件下的牵引所布点、装置容量选择、电气主接线、设备平面布置等方案,以及继电保护配置及整定的特点。
    结果及结论  随着双向变流装置的推广应用,其功能优势和可靠性得到了初步验证,牵引机组设置方案逐步从三套过渡到两套,具体设置方案可结合工程需求进行选择。通过对电气主接线、设备平面布置、框架保护设置等进行系统层面的优化设计,可提升全双向变流装置应用的可靠性。建议采用两套双向变流装置分别挂接在两段中压35 kV母线上的方案,以减少列车制动能量返送至110 kV电网。

     

    Abstract:
    Objective The application of bi-directional converters in China’s urban rail transit is still in the promotion stage. Various metro companies have conducted beneficial explorations on the configuration schemes of bi-directional converters, and a widely recognized industry consensus has not yet been formed. In particular, cases using two bi-directional converters per traction substation are rare with no lines currently in operation in China, and the power supply reliability of bi-directional converters is slightly lower. Therefore, a systematic study on the application of bi-directional converters is required.
    Method The application of bi-directional converters at home and abroad is investigated, and economic and technical comparisons of configuration schemes are conducted. Schemes for traction substation positioning, equipment capacity selection, main electrical wiring, and equipment layout under the condition of full bi-directional converters are studied, along with the characteristics of relay protection configuration and settings.
    Result & Conclusion  With the promotion and application of bi-directional converters, their functional advantages and reliability are preliminarily verified. The configuration scheme for traction units is gradually transitioning from three sets to two sets, and specific configuration schemes can be selected based on project requirements. Through systematic optimization of main electrical wiring, equipment layout, and frame protection settings, the reliability of full bi-directional converter applications can be enhanced. It is recommended to adopt a scheme where two sets of bi-directional converters are respectively connected to two sections of the medium-voltage 35 kV busbars, thereby reducing the feedback of train braking energy to the 110 kV grid.

     

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