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首页> 外文期刊>Journal of the Air & Waste Management Association >Deriving environment-friendly speed limit scheme using an integrated traffic simulation framework
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Deriving environment-friendly speed limit scheme using an integrated traffic simulation framework

机译:使用集成的流量仿真框架推出环境友好速度限制方案

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摘要

Traffic authorities have taken various measures to mitigate vehicular-source pollution emissions, among which setting speed limits has been proved to be effective. However, most of the existing macroscopic research proposes idealized mathematical models to design optimal speed limit from the perspective of network equilibrium, and the simplified pollution emission functions cannot accurately reflect the emission mechanism. In order to improve the accuracy of emission calculation and obtain more reliable speed limit schemes in a large-scale network, an integrated traffic simulation approach was proposed herein to derive environment-friendly road speed limit schemes. First, this article built an integrated simulation framework to portray traffic operations and emissions comprehensively. Subsequently, a toy network was employed to demonstrate how to obtain environment-friendly speed limit schemes using this framework. Then this article utilized it to determine the corresponding optimal speed limit schemes on the Second Ring road network in Beijing under different scenarios. The results indicated that traffic authorities should impose adaptive rather than fixed speed limits according to traffic period and emission reduction priority. Moreover, imposing the derived speed limit schemes, the amounts of total emissions, hydrocarbons, carbon monoxide, nitrogen oxides, carbon dioxide, and fine particulate matter decreased by 2.24%, 0.72%, 0.13%, 1.61%, 2.32%, and 5.35% during peak hour, and by 8.31%, 0.60%, 1.92%, 7.16%, 8.60%, and 8.72% during off-peak hour, respectively. Implications: In order to alleviate traffic pollutions emission issues more effectively from the traffic management perspective, we put forward an integrated traffic simulation approach to derive the environmental friendly road speed limit schemes. We combined MOVES and PARAMICES to build the integrated traffic simulation framework to portray road traffic operations and emissions elaborately. To verify the effectiveness of our method on real large road network, we used this method to find out the corresponding optimal speed limit schemes within the combination scheme set on Second Ring road network in Beijing under different traffic demand scenarios. Comparing with the current speed limit scheme, our derived speed limit scheme contributed to lowering emission. The amounts of total pollution emissions, hydrocarbons (HC), carbon monoxide (CO), nitrogen oxides (NO_x), carbon dioxide (CO_2), and fine particulate matter (PM_(2.5)) decreased by 2.24%, 0.72%, 0.13%, 1.61%, 2.32%, and 5.35% during peak hours, and by 8.31%, 0.60%, 1.92%, 7.16%, 8.60%, and 8.72% during off-peak hours, respectively.
机译:交通当局已采取了各种措施,以减轻车载源污染排放,其中设定的车速限制已被证明是有效的。然而,大多数现有的宏观研究提出了理想化的数学模型来从网络平衡的角度设计最佳的速度极限,和简化的污染排放功能不能准确地反映发射机理。为了提高发射计算的准确性和获得在一个大型网络更可靠的限速方案,集成交通仿真方法被这里提出以导出环境友好型道路速度限制方案。本文首先建立了一个集成的仿真框架来描绘交通运营和排放全面。随后,玩具网络被用来演示如何使用这个框架,以获得环境友好型限速方案。那么本文利用它来确定不同情景下的北京二环路网对应的最优限速方案。结果表明,交通部门应根据业务期间减排优先强加自适应而不是固定的速度的限制。此外,施加所导出的速度限制方案中,相当于总排放量,烃,一氧化碳,氮氧化物,二氧化碳,和细颗粒物减少了2.24%,0.72%,0.13%,1.61%,2.32%,和5.35%高峰小时期间,并通过8.31%,0.60%,1.92%,7.16%,8.60%,和8.72%在非高峰小时,分别。启示:为了从交通管理的角度更有效地缓解交通污染排放问题,我们提出了一个综合交通仿真的方法来推导出环保路段限速方案。我们结合移动并PARAMICES打造综合交通仿真框架来描绘道路交通运营和排放精心。为了验证我们的真正大的路网方法的有效性,我们用这个方法来找出二环路网在北京下不同交通需求的方案的组合方案集内相应的最优速度极限计划。与目前速度限制方案相比,我们得到的限速方案有助于降低排放。总污染排放,碳氢化合物(HC),一氧化碳(CO),氮氧化物(NO_x的),二氧化碳(CO_2),和细颗粒物的量(PM_(2.5))下降2.24%,0.72%,0.13% ,1.61%,2.32%,并且在繁忙时间5.35%,并且通过分别8.31%,0.60%,1.92%,7.16%,8.60%,和在非高峰小时8.72%。

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    School of Management and Engineering Capital University of Economics and Business Beijing People's Republic of China;

    School of Management and Engineering Capital University of Economics and Business Beijing People's Republic of China;

    School of Management and Engineering Capital University of Economics and Business Beijing People's Republic of China;

    School of Management and Engineering Capital University of Economics and Business Beijing People's Republic of China;

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