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首页> 外文期刊>Urban Rail Transit >Impact of Symmetric Vertical Sinusoid Alignments on Infrastructure Construction Costs: Optimizing Energy Consumption in Metropolitan Railway Lines Using Artificial Neural Networks
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Impact of Symmetric Vertical Sinusoid Alignments on Infrastructure Construction Costs: Optimizing Energy Consumption in Metropolitan Railway Lines Using Artificial Neural Networks

机译:对称垂直正弦朝向对称对称对基础设施建设成本的影响:使用人工神经网络优化大都市铁路线的能源消耗

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Minimizing energy consumption is a key issue from both an environmental and economic perspectives for railways systems; however, it is also important to reduce infrastructure construction costs. In the present work, an artificial neural network (ANN) was trained to estimate the energy consumption of a metropolitan railway line. This ANN was used to test hypothetical vertical alignments scenarios, proving that symmetric vertical sinusoid alignments (SVSA) can reduce energy consumption by up to 18.4% compared with a flat alignment. Finally, we analyzed the impact of SVSA application on infrastructure construction costs, considering different scenarios based on top–down excavation methods. When balancing reduction in energy consumption against infrastructure construction costs between SVSA and flat alignment, the extra construction costs due to SVSA have a return period of 25–300?years compared with a flat alignment, depending on the soil type and construction method used. Symmetric vertical sinusoid alignment layouts are thus suitable for scattered or soft soils, up to compacted intermediate geomaterials.
机译:最大限度地减少能源消耗是铁路系统环境和经济观点的关键问题;但是,减少基础设施建设成本也很重要。在本作工作中,培训人工神经网络(ANN)以估计大都市铁路线的能量消耗。该ANN用于测试假设的垂直对准场景,证明对称垂直正弦旋律对准(SVSA)与平坦对准相比,可以将能量消耗降低18.4%。最后,考虑到基于自上而下的挖掘方法的不同情景,我们分析了SVSA对基础设施建设成本的影响。当平衡SVSA和平坦对准之间的基础设施建设成本降低能耗时,由于所使用的土壤类型和施工方法,SVSA由于SVSA引起的额外施工成本具有25-300岁的返回期。因此,对称垂直正弦对准布局适用于散射或软土,直至压实的中间地岩石。

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