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首页> 外文期刊>Geoinformatica: An international journal of advances of computer science for geographic >EcoMark 2.0: empowering eco-routing with vehicular environmental models and actual vehicle fuel consumption data
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EcoMark 2.0: empowering eco-routing with vehicular environmental models and actual vehicle fuel consumption data

机译:EcoMark 2.0:通过车辆环境模型和实际车辆油耗数据来实现生态路由

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摘要

Eco-routing is a simple yet effective approach to substantially reducing the environmental impact, e.g., fuel consumption and greenhouse gas (GHG) emissions, of vehicular transportation. Eco-routing relies on the ability to reliably quantify the environmental impact of vehicles as they travel in a spatial network. The procedure of quantifying such vehicular impact for road segments of a spatial network is called eco-weight assignment. EcoMark 2.0 proposes a general framework for eco-weight assignment to enable eco-routing. It studies the abilities of six instantaneous and five aggregated models to estimating vehicular environmental impact. In doing so, it utilizes travel information derived from GPS trajectories (i.e., velocities and accelerations) and actual fuel consumption data obtained from vehicles. The framework covers analyses of actual fuel consumption, impact model calibration, and experiments for assessing the utility of the impact models in assigning eco-weights. The application of EcoMark 2.0 indicates that the instantaneous model EMIT and the aggregated model SIDRA-Running are suitable for assigning eco-weights under varying circumstances. In contrast, other instantaneous models should not be used for assigning eco-weights, and other aggregated models can be used for assigning eco-weights under certain circumstances.
机译:生态路由是一种简单而有效的方法,可大大减少车辆运输对环境的影响,例如燃料消耗和温室气体(GHG)排放。生态路由依赖于能够可靠地量化车辆在空间网络中行驶时对环境的影响的能力。量化此类车辆对空间网络路段的影响的过程称为生态权重分配。 EcoMark 2.0为生态权重分配提出了一个通用框架,以实现生态路由。它研究了六个瞬时模型和五个聚合模型估算车辆环境影响的能力。这样,它利用了从GPS轨迹(即速度和加速度)得出的行驶信息以及从车辆获得的实际燃料消耗数据。该框架涵盖了实际燃料消耗的分析,影响模型校准以及用于评估影响模型在分配生态权重方面的效用的实验。 EcoMark 2.0的应用表明,瞬时模型EMIT和聚合模型SIDRA-Running适合在不同情况下分配生态权重。相反,在某些情况下,不应将其他瞬时模型用于分配生态权重,而可以将其他汇总模型用于分配生态权重。

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