Enhancement of Vehicle Eco-Driving Applicability through Road Infrastructure Design and Exploitation

Coiret Alex, Vandanjon Pierre-Olivier, Noël Romain
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引用次数: 1

Abstract

Energy moderation of the road transportation sector is required to limit climate change and to preserve resources. This work is focused on the moderation of vehicle consumption by optimizing the speed policy along an itinerary while taking into account vehicle dynamics, driver visibility and the road’s longitudinal profile. First, a criterion is proposed in order to detect speed policies that are impeding drivers’ eco-driving ability. Then, an energy evaluation is carried out and an optimization is proposed. A numerical application is performed on a speed limiting point with 20 usage cases and 5 longitudinal slope values. In the hypothesis of a longitudinal slope of zero, energy savings of 27.7 liter per day could be realized by a speed sign displacement of only 153.6 m. Potential energy savings can increase to up to 308.4 L per day for a −4% slope case, or up to 70.5 L per day for an ordinary −2% slope, with a sign displacement of only 391.5 m. This results in a total of 771,975 L of fuel savings over a 30 year infrastructure life cycle period. Therefore a methodology has been developed to help road managers optimize their speed policies with the aim of moderating vehicle consumption.
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通过道路基础设施设计与开发提高车辆生态驾驶适用性
为了限制气候变化和保护资源,需要对公路运输部门进行能源调节。这项工作的重点是通过优化沿路线的速度政策,同时考虑到车辆动力学,驾驶员的能见度和道路的纵向轮廓,车辆消耗的调节。首先,提出了一种标准来检测阻碍驾驶员生态驾驶能力的速度政策。然后进行了能量评价,并提出了优化方案。在限速点上进行了20个使用案例和5个纵向坡度值的数值应用。在纵向坡度为零的假设下,车速标志位移仅为153.6 m,每天可节约27.7升能源。在坡度为- 4%的情况下,潜在的能源节约可以增加到每天308.4升,或者在普通坡度为- 2%的情况下,每天高达70.5升,而标志位移仅为391.5米。在30年的基础设施生命周期内,这一共节省了771,975升的燃料。因此,开发了一种方法来帮助道路管理者优化其速度政策,以缓和车辆消耗。
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