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Understanding and estimating the carbon dioxide emissions for urban buses at different road locations: A comparison between new-energy buses and conventional diesel buses

机译:了解和估算不同道路位置的城市公交车的二氧化碳排放量:新能源公交车与常规柴油公交车之间的比较

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摘要

Public transport buses are heavy-duty vehicles that travel through the city from morning till night, which emits a large number of greenhouse gases. Understanding and estimating the characteristics of carbon emissions for transit buses are critical in achieving a low-carbon transportation system. In this study, the changes in carbon dioxide (CO_2) emissions generated from new-energy buses as well as traditional diesel buses at bus stations, intersections, and road segments are compared using statistical analysis approaches; then the factors significantly affecting the emission rates are identified based on correlation analysis and feature selection methods. Finally, a gradient boosted regression tree (GBRT) model is proposed to conduct estimations for CO_2 emission rates of buses. The results indicate that different sensitivities to various influencing factors exist in the carbon dioxide emissions of different types of buses. In addition, the VT-rvlicro regression method and Random forest technique were utilized to compare with the developed GBRT model. According to the comparison results, the estimation errors of GBRT fluctuate in a smaller range, suggesting that the GBRT model outperforms traditional approaches in emission estimation of carbon dioxide. Also, the deep understanding of the emission characteristics for both new-energy buses and conventional diesel buses helps to plan and dispatch buses with different fuel types according to local traffic conditions.
机译:公共交通工具是从早到晚穿越城市的重型车辆,它排放大量的温室气体。了解和估算公交车碳排放的特征对于实现低碳运输系统至关重要。在这项研究中,使用统计分析方法比较了新能源公交车以及公交车站,交叉路口和路段的传统柴油公交车产生的二氧化碳排放量的变化;然后根据相关分析和特征选择方法,确定对排放速率有重大影响的因素。最后,提出了一种梯度增强回归树(GBRT)模型,对公交车的CO_2排放率进行估算。结果表明,不同类型公交车二氧化碳排放量对各种影响因素的敏感性不同。此外,利用VT-rvlicro回归方法和随机森林技术与开发的GBRT模型进行比较。根据比较结果,GBRT的估算误差在较小范围内波动,这表明GBRT模型在二氧化碳排放估算中优于传统方法。此外,对新能源客车和常规柴油客车的排放特性的深刻理解有助于根据当地的交通状况规划和调度使用不同燃料类型的客车。

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