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71.
This paper describes a computationally efficient parallel-computing framework for mesoscopic transportation simulation on large-scale networks. By introducing an overall data structure for mesoscopic dynamic transportation simulation, we discuss a set of implementation issues for enabling flexible parallel computing on a multi-core shared memory architecture. First, we embed an event-based simulation logic to implement a simplified kinematic wave model and reduce simulation overhead. Second, we present a space-time-event computing framework to decompose simulation steps to reduce communication overhead in parallel execution and an OpenMP-based space-time-processor implementation method that is used to automate task partition tasks. According to the spatial and temporal attributes, various types of simulation events are mapped to independent logical processes that can concurrently execute their procedures while maintaining good load balance. We propose a synchronous space-parallel simulation strategy to dynamically assign the logical processes to different threads. The proposed method is then applied to simulate large-scale, real-world networks to examine the computational efficiency under different numbers of CPU threads. Numerical experiments demonstrate that the implemented parallel computing algorithm can significantly improve the computational efficiency and it can reach up to a speedup of 10 on a workstation with 32 computing threads.  相似文献   
72.
Connected vehicle environment provides the groundwork of future road transportation. Researches in this area are gaining a lot of attention to improve not only traffic mobility and safety, but also vehicles’ fuel consumption and emissions. Energy optimization methods that combine traffic information are proposed, but actual testing in the field proves to be rather challenging largely due to safety and technical issues. In light of this, a Hardware-in-the-Loop-System (HiLS) testbed to evaluate the performance of connected vehicle applications is proposed. A laboratory powertrain research platform, which consists of a real engine, an engine-loading device (hydrostatic dynamometer) and a virtual powertrain model to represent a vehicle, is connected remotely to a microscopic traffic simulator (VISSIM). Vehicle dynamics and road conditions of a target vehicle in the VISSIM simulation are transmitted to the powertrain research platform through the internet, where the power demand can then be calculated. The engine then operates through an engine optimization procedure to minimize fuel consumption, while the dynamometer tracks the desired engine load based on the target vehicle information. Test results show fast data transfer at every 200 ms and good tracking of the optimized engine operating points and the desired vehicle speed. Actual fuel and emissions measurements, which otherwise could not be calculated precisely by fuel and emission maps in simulations, are achieved by the testbed. In addition, VISSIM simulation can be implemented remotely while connected to the powertrain research platform through the internet, allowing easy access to the laboratory setup.  相似文献   
73.
以山东省港航业政务信息工作为例,对如何做好交通行业政务信息工作进行研究。做好交通行业政务信息工作的关键是要根据交通行业的特点,构建交通政务信息网络;围绕港航行业管理内容,突出港航信息特色;同时也离不开领导的重视和支持。  相似文献   
74.
Marine transportation is a vital component of the world’s economy and transportation network. The number of people using passenger ships around the globe is increasing worldwide. Similar to other transportation systems, passenger safety is critical in maritime shipment. As emergency evacuation processes for ships are highly different from and more complicated than those for buildings and other vehicles, many researchers have published a vast range of documents related to this peculiar research area. However, there is a tangible lack of sufficient literature review studies that investigate marine emergency evacuation (MEE). That being the case, the potential of marine transportation and the effect of emergency evacuation operation on life safety have inspired the proposal of this study. This paper offers a review of the available literature on MEE modelling, analysis and planning during the period from 1973 to 2017 using a systematic approach. After reviewing relevant academic journals, peer-reviewed conference papers, and technical reports of agencies, relevant literature is analysed. In addition, the literature review is extended by means of proposing a framework methodology which considers different possible conditions and situations during MEE. Finally, insights for ship managers and policymakers are discussed and potential future research directions are identified.  相似文献   
75.
技术站间货物列车协同作业组织模式,可实现各站获益,整体加强,对提升铁路运输生产效率具有重要意义.本文建立技术站间货物列车协同配流模型.模型以最大化两技术站的正点出发列车数作为目标函数,采用启发式遗传算法进行寻优,得到货物列车解编顺序和配流方案.最后,通过对算例进行实验分析,验证协同配流模型的实用性.结果表明,技术站间协同配流作业明显压缩车辆在站总停留时间,增加了阶段计划内正点出发列车数,进而提高了技术站内线路使用能力.  相似文献   
76.
基于RP(Revealed Preference)和SP(Stated Preference)调查数据,利用潜在类别模型对高铁旅客进行细分,得到旅客对平行车次不同服务属性,如列车运行时间、发车时段和舒适度的偏好程度,并对其进行量化;引入收益管理,以多列车整体收益最大为目标,构建平行车次动态差别定价模型,并设计模拟退火算法进行求解;最后,通过京沪高铁进行实例验证.结果表明:与固定票价进行客票销售相比,所提方案能够适应高峰期和平峰期不同客流特点,提高铁路客票总收益,为高铁平行车次灵活定价提供参考.  相似文献   
77.
城市公交票价是公交系统健康发展的重要因素,票价制定需兼顾公交企业的市场性和公益性双重属性,在保证服务质量的同时,考虑运营成本和最大限度吸引公交需求,实现经济效益和社会效益的双赢.在本文中,根据用户均衡理论,构建了城市多方式交通出行的需求分析模型,采用灵敏度分析方法给出了城市公交价格-需求弹性的计算方法.在此基础上,充分考虑了各种方式的交通特征、公交需求弹性、公交运营成本及政府限价等因素,提出了城市公交票价优化的数学规划模型,并给出了求解算法.最后,以国内某城市居民出行调查及公交运营数据为基础,分析了不同条件下公交客运需求的变化规律及城市公交票价的优化策略.  相似文献   
78.
货车是我国大气环境污染的重要来源之一,也是影响我国碳达峰总体目标实现的重要因 素。本文从货车运营环节入手,在运用生长曲线函数对货车保有量进行预测的基础上,对不同类 型货车的保有量和单车碳排放变化进行研究,并从货车节能技术发展、新能源货车推广和应用进 程两方面入手,分3种情景对货车运营环节中产生的碳排放总量趋势进行预判,推演货车运营环 节的碳达峰时间。研究结果表明,只有同时加快货车节能技术发展以及新能源货车推广和应用 进程,货车运营环节中产生的碳排放总量规模才能得到有效抑制并逐渐减少。若到 2030 年货 车单车燃料消耗水平较 2019 年降低 20%以上,新能源货车在货车整体保有量中的占比达到 20%,到 2060 年货车单车燃料消耗水平较 2019 年降低 50%,新能源货车占比达到 50%,则货车 运营环节碳达峰时间将缩短至2030年左右实现,2030年后货车运营环节产生的碳排放总量规 模将逐渐减少。  相似文献   
79.
为探究城市交通出行强度影响因素及不同因素的影响程度,本文从土地利用与交通基础设施建设两方面出发,分析包括土地利用混合指数,职住混合率熵指数,公共交通站点 500 m覆盖率,路网可达性等17个指标与出行强度的相关关系;基于相关系数和拟合优度分析,提取7个与出行强度强相关指标,基于所识别指标构建北京市中心城区出行强度多元回归模型.模型结果表明,职住混合率熵指数对出行强度的影响最为显著,公共交通站点覆盖率对出行强度的影响比道路网密度和可达性更为明显.此外,给出单一土地利用/交通基础设施指标对出行强度拟合结果的离群特征分析方法,用于评估不同区域基础设施供给与交通出行需求之间的平衡关系.  相似文献   
80.
Traditional macroscopic traffic flow modeling framework adopts the spatial–temporal coordinate system to analyze traffic flow dynamics. With such modeling and analysis paradigm, complications arise for traffic flow data collected from mobile sensors such as probe vehicles equipped with mobile phones, Bluetooth, and Global Positioning System devices. The vehicle‐based measurement technologies call for new modeling thoughts that address the unique features of moving measurements and explore their full potential. In this paper, we look into the concept of vehicular fundamental diagram (VFD) and discuss its engineering implications. VFD corresponds to a conventional fundamental diagram (FD) in the kinematic wave (KW) theory that adopts space–time coordinates. Similar to the regular FD in the KW theory, VFD encapsulates all traffic flow dynamics. In this paper, to demonstrate the full potential of VFD in interpreting multilane traffic flow dynamics, we generalize the classical Edie's formula and propose a direct approach of reconstructing VFD from traffic measurements in the vehicular coordinates. A smoothing algorithm is proposed to effectively reduce the nonphysical fluctuation of traffic states calculated from multilane vehicle trajectories. As an example, we apply the proposed methodology to explore the next‐generation simulation datasets and identify the existence and forms of shock waves in different coordinate systems. Our findings provide empirical justifications and further insight for the Lagrangian traffic flow theory and models when applied in practice. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
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