In this paper, a method to assess, optimize and modify the vertical alignment of a road is developed. The aim is to optimize the alignment with respect to fuel consumption and quantify the induced reduction in terms of both fuel consumption and emissions from vehicles' operation, already at early design. The idea consists in employing an averaged-speed-gradient model to a single heavy-duty vehicle (HDV), considering different operating speeds and engine loads. Three optimization models are proposed and can be used to induce different reduction levels — in fuel consumption or emissions — each corresponding to a given road vertical alignment profile, generated using nonlinear optimization techniques. Five performance indicators are estimated ...
NVDB contains information of Sweden’s roads and a large number of properties concerning them. This i...
International audienceEnergy moderation of the road transportation sector is required to limit clima...
This paper proposes the velocity profile to minimize fuel consumption based on Global Positioning Sy...
In this paper, a method to assess, optimize and modify the vertical alignment of a road is developed...
In this paper, a method to assess, optimize and modify the vertical alignment of a road is developed...
This paper presents an analysis of the effects of the geometry of a highway on fuel consumption of h...
This thesis defines a multi-objective optimization model that seeks to find road profiles that would...
This paper provides guidelines and tools for quantitative evaluations by means of fuel consumption a...
The highway alignment optimization (HAO) process is a complex combinatorial optimization problem in ...
This thesis describes the results of an investigation into the effects of vertical alignment design ...
The knowledge of the effects which the vertical alignment of a road produces on traffic is necessary...
The aim of this study is to analyze the influence of horizontal geometric design and vehicle operati...
This thesis is concerned with fuel-efficient driving strategies for heavy-dutyvehicles driving on hi...
State-of-the-art engine models are used to study the emissions production, and fuel consumption min...
Saving fuel for heavy trucks travelling on a highway is possible by using the vechicles' weight an...
NVDB contains information of Sweden’s roads and a large number of properties concerning them. This i...
International audienceEnergy moderation of the road transportation sector is required to limit clima...
This paper proposes the velocity profile to minimize fuel consumption based on Global Positioning Sy...
In this paper, a method to assess, optimize and modify the vertical alignment of a road is developed...
In this paper, a method to assess, optimize and modify the vertical alignment of a road is developed...
This paper presents an analysis of the effects of the geometry of a highway on fuel consumption of h...
This thesis defines a multi-objective optimization model that seeks to find road profiles that would...
This paper provides guidelines and tools for quantitative evaluations by means of fuel consumption a...
The highway alignment optimization (HAO) process is a complex combinatorial optimization problem in ...
This thesis describes the results of an investigation into the effects of vertical alignment design ...
The knowledge of the effects which the vertical alignment of a road produces on traffic is necessary...
The aim of this study is to analyze the influence of horizontal geometric design and vehicle operati...
This thesis is concerned with fuel-efficient driving strategies for heavy-dutyvehicles driving on hi...
State-of-the-art engine models are used to study the emissions production, and fuel consumption min...
Saving fuel for heavy trucks travelling on a highway is possible by using the vechicles' weight an...
NVDB contains information of Sweden’s roads and a large number of properties concerning them. This i...
International audienceEnergy moderation of the road transportation sector is required to limit clima...
This paper proposes the velocity profile to minimize fuel consumption based on Global Positioning Sy...