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首页> 外文期刊>Control Systems, IEEE >Heavy-Duty Vehicle Platooning for Sustainable Freight Transportation: A Cooperative Method to Enhance Safety and Efficiency
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Heavy-Duty Vehicle Platooning for Sustainable Freight Transportation: A Cooperative Method to Enhance Safety and Efficiency

机译:用于可持续货运的重型车辆排:提高安全性和效率的合作方法

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摘要

The current system of global trade is largely based on transportation and communication technology from the 20th century. Advances in technology have led to an increasingly interconnected global market and reduced the costs of moving goods, people, and technology around the world [1]. Transportation is crucial to society, and the demand for transportation is strongly linked to economic development. Specifically, road transportation is essential since about 60% of all surface freight transportation (which includes road and rail transport) is done on roads [2]. Despite the important role of road freight transportation in the economy, it is facing serious challenges, such as those posed by increasing fuel prices and the need to reduce greenhouse gas emissions. On the other hand, the integration of information and communication technologies to transportation systems-leading to intelligent transportation systems-enables the development of cooperative methods to enhance the safety and energy efficiency of transportation networks. This article focuses on one such cooperative approach, which is known as platooning. The formation of a group of heavy-duty vehicles (HDVs) at close intervehicular distances, known as a platoon (see Figure 1) increases the fuel efficiency of the group by reducing the overall air drag. The safe operation of such platoons requires the automatic control of the velocity of the platoon vehicles as well as their intervehicular distance. Existing work on platooning has focused on the design of controllers for these longitudinal dynamics, in which simple vehicle models are typically exploited and perfect environmental conditions, such as flat roads, are generally assumed. The broader perspective of how platooning can be effectively exploited in a freight transportation system has received less attention. Moreover, experimental validations of the fuel-saving potential offered by platooning have typically been performed by reproducing the perfect conditio- s as assumed in the design of the automatic controllers. This article focuses on these two aspects by addressing the following two objectives.
机译:当前的全球贸易体系主要基于20世纪的运输和通信技术。技术的进步导致全球市场之间的联系日益紧密,并降低了在全球范围内运送货物,人员和技术的成本[1]。交通运输对社会至关重要,交通运输需求与经济发展密切相关。具体来说,公路运输至关重要,因为大约60%的地面货物运输(包括公路和铁路运输)都是在公路上进行的[2]。尽管公路货运在经济中发挥着重要作用,但公路货运仍面临着严峻的挑战,例如燃料价格上涨和减少温室气体排放所带来的挑战。另一方面,将信息和通信技术集成到交通系统中导致智能交通系统,这使得能够开发协作方法来提高交通网络的安全性和能源效率。本文重点介绍一种这样的协作方法,称为排。在靠近车辆的距离处形成一组重型车辆(HDV),称为排(见图1),通过减少整体空气阻力来提高该组的燃油效率。这种排的安全操作需要对排车辆的速度及其行进距离进行自动控制。现有的对排的工作集中在用于这些纵向动力学的控制器的设计上,在该控制器中典型地利用简单的车辆模型并且通常假定完美的环境条件,例如平坦的道路。在货运系统中如何有效利用排的更广阔的视野受到了较少的关注。此外,通常通过重现自动控制器设计中假定的理想条件,来进行对排燃料节省潜力的实验验证。本文通过解决以下两个目标集中在这两个方面。

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