To improve the accuracy and applicability of vehicular emission models, this study proposes a speed and vehiclespecific power (VSP) modeling method to estimate vehicular emissions and fuel consumption using data gathered by a portable emissions monitoring system (PEMS). The PEMS data were categorized into discrete speed-VSP bins on the basis of the characteristics of vehicle driving conditions and emissions in Chinese cities. Speed-VSP modal average rates of emissions (or fuel consumption) and the time spent in the corresponding speed-VSP bins were then used to calculate the total trip emissions (or fuel consumption) and emission factors (or fuel economy) under specific average link speeds. The model approach was validated by comparing it against measured data with prediction errors within 20% for trip emissions and linkspeedbased emission factors. This analysis is based on the data of light-duty gasoline vehicles in China; however, this research approach could be generalized to other vehicle fleets in other countries. This modeling method could also be coupled with traffic demand models to establish high-resolution emissions inventories and evaluate the impacts of traffic-related emission control measures. Copyright © 2010 Air & Waste Management Association.
CITATION STYLE
Wang, H., & Fu, L. (2010). Developing a high-resolution vehicular emission inventory by integrating an emission model and a traffic model: Part 1-modeling fuel consumption and emissions based on speed and vehicle-specific power. Journal of the Air and Waste Management Association, 60(12), 1463–1470. https://doi.org/10.3155/1047-3289.60.12.1463
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