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Enhancing reliability assessment of curved low-stiffness track-viaducts with an adaptive surrogate-based approach emphasizing track dynamic geometric state
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作者 CHENG Fang LIU Hui YANG Rui 《Journal of Central South University》 CSCD 2024年第11期4262-4275,共14页
Traditional track dynamic geometric state(TDGS)simulation incurs substantial computational burdens,posing challenges for developing reliability assessment approach that accounts for TDGS.To overcome these,firstly,a si... Traditional track dynamic geometric state(TDGS)simulation incurs substantial computational burdens,posing challenges for developing reliability assessment approach that accounts for TDGS.To overcome these,firstly,a simulation-based TDGS model is established,and a surrogate-based model,grid search algorithm-particle swarm optimization-genetic algorithm-multi-output least squares support vector regression,is established.Among them,hyperparameter optimization algorithm’s effectiveness is confirmed through test functions.Subsequently,an adaptive surrogate-based probability density evolution method(PDEM)considering random track geometry irregularity(TGI)is developed.Finally,taking curved train-steel spring floating slab track-U beam as case study,the surrogate-based model trained on simulation datasets not only shows accuracy in both time and frequency domains,but also surpasses existing models.Additionally,the adaptive surrogate-based PDEM shows high accuracy and efficiency,outperforming Monte Carlo simulation and simulation-based PDEM.The reliability assessment shows that the TDGS part peak management indexes,left/right vertical dynamic irregularity,right alignment dynamic irregularity,and track twist,have reliability values of 0.9648,0.9918,0.9978,and 0.9901,respectively.The TDGS mean management index,i.e.,track quality index,has reliability value of 0.9950.These findings show that the proposed framework can accurately and efficiently assess the reliability of curved low-stiffness track-viaducts,providing a theoretical basis for the TGI maintenance. 展开更多
关键词 reliability assessment track dynamic geometric state hybrid machine learning algorithm adaptive learning strategy probability density evolution method
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预制钢弹簧浮置板道床在轻质U梁上的适应性分析
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作者 周昌盛 刘锦辉 +3 位作者 刘宇航 周华龙 王小韬 陈赛 《中国铁路》 2022年第5期61-67,共7页
以深圳地铁6号线为工程背景,通过模态分析、轮轨系统动力分析方法论证预制钢弹簧浮置板道床应用于U梁的可行性,进而对比分析U梁及其跨度对轮轨关系的影响。通过仿真结果分析表明:U梁、钢弹簧预制板的低阶垂向弯曲模态频率分别为10.53~15... 以深圳地铁6号线为工程背景,通过模态分析、轮轨系统动力分析方法论证预制钢弹簧浮置板道床应用于U梁的可行性,进而对比分析U梁及其跨度对轮轨关系的影响。通过仿真结果分析表明:U梁、钢弹簧预制板的低阶垂向弯曲模态频率分别为10.53~15.02 Hz、4.45~7.02 Hz,二者错开,对共振影响较小;U梁基础、预制钢弹簧浮置板道床叠加条件下,车辆运行稳定性、平稳性及轨道动态几何状态指标均在规范安全限值范围内;相比隧道基础,列车通过U梁基础钢弹簧浮置板道床时所激发的轨道动态高低、轨向、水平和TQI指标分别放大106.60%、35.25%、79.78%和18.69%,而动态轨距、轨距变化率及三角坑指标变化较小;梁跨越大,轨道动态高低、TQI指标越趋于不利。 展开更多
关键词 地铁 U梁 钢弹簧浮置板道床 轮轨系统 轨道动态几何状态
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