首页> 外文会议>EAEC European automotive congress >CHALLENGES AND POSSIBILITIES FOR ENHANCED VEHICLE FLOW AND SAFETY AND REDUCED FUEL CONSUMPTION AND EMISSION IN URBAN TRAFFIC IN WBC REGION
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CHALLENGES AND POSSIBILITIES FOR ENHANCED VEHICLE FLOW AND SAFETY AND REDUCED FUEL CONSUMPTION AND EMISSION IN URBAN TRAFFIC IN WBC REGION

机译:在WBC地区的城市交通中提高车辆流量和安全性以及降低燃料消耗和减少的挑战和可能性

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摘要

Enhanced vehicle flow and safety, reduction and eventually elimination of traffic congestion have been attractive issues for the past two decades in the Intelligent Transportation Systems (ITS) domain. Several Advanced Driver Assistance Systems (ADAS) intended to lower down the driver workload, reduce congestion and improve safety, have been developed during this period and introduced on the market. Adaptive Cruise Control (ACC) is one of the first systems that lead towards enhanced traffic flow and safety, but it is limited on higher speeds. For low speeds a Stop and Go system has been introduced as an upgrade of ACC. In order to achieve interoperability and harmonization several ITS standards have been developed. Even though they are regularly adopted to the technical progress to take into account the latest engine technologies, there is still a significant room for their further elaboration and evaluation of the possibilities for implementation in real urban environment (especially in the WBC region), and, if possible, proposing their further improvement. Based on the standard ISO 22178 Low speed following systems, a research that should reveal answers to some of the problems and challenges lied down in this paper has been designed. The research is focused on urban traffic environment. Due to increased driver workload, inattention, weather and several side activities like SMS, CD and radio change, site seeing etc. vehicles movement through urban intersections gets wavy effect. In these conditions, intensive acceleration and deceleration are imminent and lead towards decreased driver concentration, reduced safety and increased fuel consumption and emission. This problem imposes the meaning of harmonized vehicle start and flow through intersections without inappropriate acceleration and deceleration and its impact on the traffic flow, safety, fuel consumption and emission. Although the introduction of ITS standards and researches conducted in the subject field are expected to have contribution in reduction of traffic congestion and enhanced safety, there is a space for further contribution especially in term of implementation in regions, like WBC region, with not optimized urban traffic solutions and various and often old vehicle fleet. So far, in this research, the state of the art concerning ACC and all variations and modifications of the system: control algorithms, controller designs, following models and strategies, combinations with other Driver Assistance Systems, upgrades to Cooperative Adaptive Cruise Control and Stop and Go systems, has been reviewed and analyzed. An initial model of several urban intersections using Matlab has been developed. Using this model, preliminary qualitative and quantitative results concerning traffic flow, time of travel through urban intersections, vehicle speed and acceleration/deceleration over time have been obtained. The model gives qualitative results concerning fuel consumption and emission. Besides the subject explanation, this paper contains research approach, results already achieved and description of further research activities.
机译:增强的车辆流量和安全性,减少和最终消除交通拥堵在智能交通系统(其)域中的过去二十年中具有吸引力的问题。在此期间开发了几种先进的驾驶员辅助系统(ADA)旨在降低驾驶员工作量,减少拥塞和提高安全性,并在市场上介绍。 Adaptive Cruise Control(ACC)是第一系统之一,其导致增强的交通流量和安全性,但它的速度较高。对于低速速度,已引入停止和转储系统作为ACC的升级。为了实现互操作性和协调,已经开发了若干标准。尽管他们经常采用的技术进步,考虑到最新的发动机技术,还有对于在实际的城市环境中实现的可能性(特别是白细胞区域),其进一步阐述和评价显著的房间,和,如果可能的话,提出进一步的改进。基于标准ISO 22178低速后系统,设计了一项应该揭示本文呈现的一些问题和挑战的答案。该研究专注于城市交通环境。由于驾驶员工作量增加,疏忽,天气和短信,CD和无线电变化,网站看到等等。通过城市交叉路口的车辆运动得到了波浪效果。在这些条件下,密集的加速和减速迫在眉睫并导致驾驶员浓度降低,减少安全性并提高燃料消耗和排放。这个问题施加了统一车辆的含义,通过交叉口流动,没有不适当的加速和减速,并且对交通流量,安全,燃料消耗和排放的影响。虽然预计其在主题领域进行的标准和研究有望减少交通拥堵和加强安全性,但有一个空间,特别是在地区的实施期限,如WBC地区,没有优化的城市交通解决方案和各种旧车舰队。到目前为止,在这项研究中,本领域的技术有关ACC和系统的所有变化和修改:控制算法,控制器设计,遵循模型和策略,与其他驾驶员辅助系统的组合,升级到合作自适应巡航控制和停止和停止Go Systems已被审查和分析。已经开发了使用MATLAB的几个城市交叉路口的初始模型。使用该模型,初步定性和定量结果有关交通流量,通过城市交叉路口的旅行时间,车速和加速/减速时间随着时间的推移。该模型提供了有关燃料消耗和排放的定性结果。除了主题的解释之外,本文还包含研究方法,结果已经取得了成就和描述了进一步的研究活动。

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