基于多特征综合分析的城市轨道交通列车运行噪声成因与治理启示

Insights into Noise Causes and Mitigation for URT Train Operations Based on Multi-Feature Comprehensive Analysis

  • 摘要:
    目的 针对由城市轨道交通列车运行噪声超标导致的乘客乘坐舒适度降低、机械故障发现难度增加等问题,基于多特征综合分析,研究城市轨道交通列车运行噪声成因与治理措施。
    方法 以昆明轨道交通4号线为例,提出一种城市轨道交通列车运行噪声成因分析方法,确定影响噪声的关键因素。考虑列车运行速度、线路特征等参数对列车运行噪声的交互影响,基于随机森林回归模型和SHAP解释方法,构建列车运行噪声多特征模型,并对多特征因素进行综合分析。
    结果及结论 列车运行速度是影响列车客室噪声的最重要因素,相对重要性为41.32%。对客室噪声影响的相对重要性排序为列车运行速度相对重要性>坡度相对重要性>曲线半径相对重要性。低速条件下,列车运行速度对噪声的边际贡献较小;线路曲线半径较小时,列车运行速度对噪声的影响被成倍放大;列车上坡时,运行速度对噪声具有更强的正向贡献。

     

    Abstract:
    Objective In response to issues such as reduced passenger ride comfort and increased difficulty in detecting mechanical faults caused by excessive noise during URT (urban rail transit) train operation, the causes of train operation noise and mitigation measures based on a multi-feature comprehensive analysis are studied.
    Method Taking Kunming Metro Line 4 as a case study, an analysis method for identifying the causes of train operation noise is proposed to determine the key noise-influencing factors. Considering the interactive effects of parameters such as train operating speed and line characteristics on noise, a multi-feature model for train operation noise is constructed based on the random forest regression model and SHAP (SHapley Additive exPlanations) interpretation method, and the multi-feature factors are comprehensively analyzed.
    Result & Conclusion  Train operating speed is the most significant factor affecting passenger cabin noise, with a relative importance of 41.32%. The relative importance ranking of factors influencing cabin noise is as follows: train operating speed > gradient > curve radius. Under low-speed conditions, the marginal contribution of train speed to noise is relatively small. When the line curve radius is small, the impact of train speed on noise is magnified. When the train is running on an uphill gradient, the operating speed has a stronger positive contribution to the noise level.

     

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