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在"互联网+"环境下,城市道路交通传统信号控制优化存在的技术瓶颈将得到有效突破。结合信号控制优化实际工作指出传统信号控制优化技术的瓶颈,分析"互联网+"技术辅助信号控制优化的解决思路及工作流程。重点探讨"互联网+"环境下的信号控制优化关键技术,例如主动发现问题、精准优化方案和客观量化评估优化效果等。其中针对方案优化还研究了利用"互联网+"数据校核交通模型以提高信号方案仿真精度。实践结果表明:利用"互联网+"技术可以有效辅助信号控制优化工作,提高信号控制方案与交通流的适配水平,有效缓解交通拥堵。 相似文献
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姜泉 《青岛远洋船员学院学报》2012,33(1):79-82
孔子的人才观虽然产生于春秋时期动荡的社会背景下,却揭示了人才的最本质内涵———"仁、智、勇"。三者作为人才内涵的核心三要素,形成一个内在的三角稳定结构,它能够持久地推动包括成才在内的人的生命境界的发展,因而具有超越时代和社会阶层的普适价值。 相似文献
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交通运输是国民经济基础性行业,经济新常态下改革交通运输执法体制是贯彻中央全面深化改革、全面依法治国方针的内在要求,是消除执法体制机制弊端、根治执法乱象、破解交通运输发展瓶颈的有效途径,改革的主要内容和目的主要有整合职能、精简机构、核定编制、保障经费四个方面。改革中市辖区不设置执法机构,市管公路治超站移交县级管理,妥善进行富余人员转岗分流,要制定配套政策、采取措施保障改革顺利进行,处理好改革与稳定的关系,做到改革与治理两不误。 相似文献
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It is essential to obtain accurate location of vehicles for new applications of Intelligent Transportation Systems. To remedy the defects of present Global Positioning System and vehicle-to-infrastructure (V-I) positioning technology, a new positioning approach based on vision and V-I communication is proposed. This approach aims at lane-level positioning with lower cost than conventional ones. In this approach, the position of the vehicle is represented by its lateral position (the lane number) and longitudinal position (the distance from entrance of the road) in a course coordinate system along the road; the specific lane the vehicle is occupying (the lane number) can be judged using the information of lane lines detected by vision systems; then the distance to the vehicle is obtained by a Road Side Unit (RSU) during the V-I communication; and the longitudinal position is calculated. The error of the approach on typical operating conditions is analyzed, indicating that the new approach can achieve the accuracy of less than 0.31 m for straight road and 0.58 m for typical arc road with ultra-wideband communication and ranging technologies and rational arrangement of RSUs. The feasibility of this approach is presented. 相似文献
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Zheng Ran Hua Yan Huimin Zhang Yun Li 《International Journal of Automotive Technology》2017,18(6):1109-1119
The AUTOSAR has been developed as the worldwide standard for automotive E/E software systems, making the electronic components of different suppliers to be employed universally. However, as the number of component-based applications in modern automotive embedded systems grows rapidly and the hardware topology becomes increasingly complex, deploying such large number of components in automotive distributed system in manual way is over-dependent on experience of engineers which in turn is time consuming. Furthermore, the resource limitation and scheduling analysis make the problems more complex for developers to find out an approximate optimal deploying approach in system integration. In this paper, we propose a novel method to deploy the AUTOSAR components onto ECUs with the following features. First, a clustering algorithm is designed for deploying components automatically within relatively low time complexity. Second, a fitness function is designed to balance the ECUs load. The goal of our approach is to minimize the communication cost over all the runnable entities while meeting all corresponding timing constraints and balancing all the ECUs load. The experiment results show that our approach is efficient and has well performance by comparing with other existing methods in specific and synthetic data set. 相似文献
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Colin Cole Maksym Spiryagin Qing Wu Yan Quan Sun 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2017,55(10):1498-1571
ABSTRACTSignificant developments in longitudinal train simulation and an overview of the approaches to train models and modelling vehicle force inputs are firstly presented. The most important modelling task, that of the wagon connection, consisting of energy absorption devices such as draft gears and buffers, draw gear stiffness, coupler slack and structural stiffness is then presented. Detailed attention is given to the modelling approaches for friction wedge damped and polymer draft gears. A significant issue in longitudinal train dynamics is the modelling and calculation of the input forces – the co-dimensional problem. The need to push traction performances higher has led to research and improvement in the accuracy of traction modelling which is discussed. A co-simulation method that combines longitudinal train simulation, locomotive traction control and locomotive vehicle dynamics is presented. The modelling of other forces, braking propulsion resistance, curve drag and grade forces are also discussed. As extensions to conventional longitudinal train dynamics, lateral forces and coupler impacts are examined in regards to interaction with wagon lateral and vertical dynamics. Various applications of longitudinal train dynamics are then presented. As an alternative to the tradition single wagon mass approach to longitudinal train dynamics, an example incorporating fully detailed wagon dynamics is presented for a crash analysis problem. Further applications of starting traction, air braking, distributed power, energy analysis and tippler operation are also presented. 相似文献