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71.
交叉口单点公共汽车交通优先控制方法研究 总被引:9,自引:0,他引:9
开发ITS背景下的公共汽车交通优先控制方法是从根本上改善公交车辆运行情况的需要。满足车辆固有的行驶时刻表是实施公交优先通行申请的重要依据,在本文控制策略中运用绿灯时间延长和相位提前激活两种方法,在兼顾其它车辆运行情况的前提下,给予晚点公交车优先的通行信号。论文最后以厦门市湖滨南路实际交通流量为依托,运用交通仿真方法验证了优先控制策略的实际效果。 相似文献
72.
集装箱船舶装箱排序问题综合集装箱装船顺序与船舶贝内排箱,是一类典型的组合优化问题.考虑堆场发箱顺序和船舶配载之间的关联,构建集装箱船舶装箱排序问题的数学模型.针对构建的优化模型,鉴于已有方法难以直接对其进行求解,基于两阶段分层求解思想设计SWO-HES两阶段算法.算法第1阶段利用吱呀轮算法(SWO)大邻域导向式搜索的特点优化集装箱装船顺序问题;第2阶段将SWO的结果作为输入,基于启发式规则和演化策略算法(ES)构造混合演化策略算法(HES)优化船舶贝内排箱问题.最后,通过不同规模算例的研究,将SWO-HES与常见智能算法、基于实际装船规则的启发式算法进行对比分析,验证模型与算法的有效性. 相似文献
73.
燃油成本在班轮运营总成本中占有很大比重,燃油补给是影响航运公司班轮运营成本和效益的一项重要决策.基于航速调整策略,以班轮运营总成本最小化为目标,建立燃油补给混合整数非线性规划模型,运用分段线性逼近法对燃油消耗函数进行线性化处理,并设计了求解算法步骤.实例分析验证了模型和求解方法的有效性.结果表明,在航运市场需求低迷的情况下,船舶更适宜采取较低的航速,采取灵活的加油港策略或放宽船舶到港时间窗限制,能更为有效地降低燃油成本. 相似文献
74.
随着国家对环境保护和能源节约的重视以及新能源政策的实施,电动汽车行业迎来了快速发展。充电基础设施的建设,是加快电动汽车推广的重要需要。电动汽车充电基础设施建设和运营业务发展的机会也极大,随之而来的安全管理工作要求也越来越高。本文依据充电桩建设和运营的特点,剖析其中面临的安全风险,并提出加强安全管理工作的措施,为充电桩企业安全管理运营提供参考和借鉴。 相似文献
75.
文章基于全球低碳节能政策,研究并概述了直流微网新能源电力推进系统及其关键技术,对比了以太阳能、蓄电池、氢燃料电池等为主动力的电力推进系统,并分析其性能、综合效率及实际船舶应用,对推进绿色船舶、节能减排等具有重要的实际意义。 相似文献
76.
城市发展有它内在的规律性,中小城市特别是近郊小城市交通发展不能照搬大城市经验,应找到一条实事求是的自身发展路径。在新型城镇化和经济发展新常态对城镇化质量提出新要求的背景下,以成都市近郊小城市新繁镇为例,从机动化水平、交通模式、道路网络与交通管理等方面系统梳理近郊中小城市交通现状特征和发展面临的问题,分析交通需求的变化趋势,建立近郊小城市交通组织的分析框架,在此基础上,提出未来交通发展的重要策略。 相似文献
77.
78.
In this paper, airline energy efficiency is divided into three stages: the operations stage, the services stage and the sales stage. Greenhouse gas emissions are treated as an undesirable output of the services stage. This new three-stage strategic operating framework is a modification of existing models. A new model, Virtual Frontier Network Range Adjusted Measure with weak disposability, is proposed to evaluate the efficiencies of 22 international airlines, from 2008 to 2012. The results show that the new model can establish more reasonable rankings and confirm new benchmarking airlines and that inclusion in the European Union’s Emissions Trading Scheme has had little influence on the improvement of airline energy efficiency. 相似文献
79.
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
80.
This paper provides a review of research performed by Svenson with colleagues and others work on mental models and their practical implications. Mental models describe how people perceive and think about the world including covariances and relationships between different variables, such as driving speed and time. Research on mental models has detected the time-saving bias [Svenson, O. (1970). A functional measurement approach to intuitive estimation as exemplified by estimated time savings. Journal of Experimental Psychology, 86, 204–210]. It means that drivers relatively overestimate the time that can be saved by increasing speed from an already high speed, for example, 90–130?km/h, and underestimate the time that can be saved by increasing speed from a low speed, for example, 30–45?km/h. In congruence with this finding, mean speed judgments and perceptions of mean speeds are also biased and higher speeds given too much weight and low speeds too little weight in comparison with objective reality. Replacing or adding a new speedometer in the car showing min per km eliminated or weakened the time-saving bias. Information about braking distances at different speeds did not improve overoptimistic judgments of braking capacity, but information about collision speed with an object suddenly appearing on the road did improve judgments of braking capacity. This is relevant to drivers, politicians and traffic regulators. 相似文献