Energy-efficient navigation constitutes an important challenge in electric vehicles, due to their limited battery capacity. We employ a Bayesian approach to model the energy consumption at road segments for efficient navigation. In order to learn the model parameters, we develop an online learning framework and investigate several exploration strategies such as Thompson Sampling and Upper Confidence Bound. We then extend our online learning framework to multi-agent setting, where multiple vehicles adaptively navigate and learn the parameters of the energy model. We analyze Thompson Sampling and establish rigorous regret bounds on its performance in the single-agent and multi-agent settings, through an analysis of the algorithm under batched...
The uninterrupted growth in transportation activities has been exerting significant pressure on our ...
In this work, we address the problem of long-distance navigation for battery electric vehicles (BEVs...
In this work we teach a robot where to drive from measured, real world data. In Chapter 1 we measure...
Energy efficient navigation constitutes an important challenge in electric vehicles, due to their li...
Reducing the dependence on fossil fuels in the transport sector is crucial to have a realistic chanc...
Electrical vehicle (EV) raises to promote an eco-sustainable society. Nevertheless, the "range anxie...
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
There are tons of motivations for people to move toward EVs. First, it is more economical to use ele...
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
This paper addresses the challenge of efficiently and accurately predicting an electric vehicle's at...
The uninterrupted growth in transportation activities has been exerting significant pressure on our ...
The uninterrupted growth in transportation activities has been exerting significant pressure on our ...
In this work, we address the problem of long-distance navigation for battery electric vehicles (BEVs...
In this work we teach a robot where to drive from measured, real world data. In Chapter 1 we measure...
Energy efficient navigation constitutes an important challenge in electric vehicles, due to their li...
Reducing the dependence on fossil fuels in the transport sector is crucial to have a realistic chanc...
Electrical vehicle (EV) raises to promote an eco-sustainable society. Nevertheless, the "range anxie...
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
There are tons of motivations for people to move toward EVs. First, it is more economical to use ele...
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
The limited driving range is considered as a significant barrier to the spread of electric vehicles....
This paper addresses the challenge of efficiently and accurately predicting an electric vehicle's at...
The uninterrupted growth in transportation activities has been exerting significant pressure on our ...
The uninterrupted growth in transportation activities has been exerting significant pressure on our ...
In this work, we address the problem of long-distance navigation for battery electric vehicles (BEVs...
In this work we teach a robot where to drive from measured, real world data. In Chapter 1 we measure...