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首页> 外文期刊>ITS Journal >Characteristics of operating mode distributions of light duty vehicles by road type, average speed, and driver type for estimating on-road emissions: Case study of Beijing
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Characteristics of operating mode distributions of light duty vehicles by road type, average speed, and driver type for estimating on-road emissions: Case study of Beijing

机译:轻型车辆按道路类型,平均速度和驾驶员类型的运行模式分布特征,用于估算道路排放:以北京为例

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摘要

Researchers have collected extensive vehicle activity data in Beijing using GPS and attempted to develop a comprehensive database of facility- and speed-specific operating mode (OpMode) distributions of various vehicle types for estimating on-road vehicle emissions. This study developed the specific OpMode distributions of light duty vehicles (LDVs) for both restricted access and unrestricted access road types at various average speeds for characteristic analysis. (1) Strong patterns are found in the variations in OpMode distributions with the increase in the average speed: the time fraction of Decelerating/Braking remains less than 7%. The fraction of Idling decreases dramatically from 95% to 0%, while the fraction of Cruising/Accelerating increases from 2% to 94%. The fraction of Coasting increases to 28% and then decreases. (2) The time fractions for restricted access and unrestricted access are significantly different at the same average speeds, especially in Operating Modes #0, #1, #11, #12, #13, #14, #21, and #22, possibly causing an error of 20% in the emissions estimations. (3) Taxis show different OpMode distributions than those for private cars in the operating modes of Decelerating/Braking, Idling, and high-VSP modes, especially at low average speeds. The differences are derived from the more skillful driving behaviors of taxi drivers and may cause an estimation error of over 10%. Thus, the activities of taxis and private cars should be modeled separately for on-road emissions estimations.
机译:研究人员已使用GPS收集了北京的大量车辆活动数据,并试图建立一个综合的数据库,其中包含各种车辆类型的特定于设施和速度的操作模式(OpMode)分布,以估算公路车辆的排放量。这项研究开发了轻型车辆(LDV)的特定OpMode分布,用于以各种平均速度行驶的受限道路和非受限道路类型,以进行特征分析。 (1)随着平均速度的提高,在OpMode分布的变化中发现了强大的模式:减速/制动的时间比例仍然小于7%。空转的比例从95%急剧降低到0%,而巡航/加速的比例从2%增加到94%。惯性运动的比例增加到28%,然后下降。 (2)在平均速度相同的情况下,受限访问和非受限访问的时间分数显着不同,尤其是在#0,#1,#11,#12,#13,#14,#21和#22等工作模式下,可能会导致排放估算误差20%。 (3)在减速/制动,空转和高VSP模式下,尤其是在平均速度较低的情况下,出租车显示出与私家车不同的OpMode分布。差异是由出租车司机更熟练的驾驶行为引起的,并且可能导致超过10%的估计误差。因此,出租车和私家车的活动应分别建模,以进行道路排放估算。

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