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Exact Formulation and Comparison Between the User Optimum and System Optimum Solution for Routing Privately Owned Automated Vehicles

机译:最优路线与最优方案的精确表述和比较

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The possibility of having driverless cars on the streets seems to be more real than ever. In this paper, we focus on developing exact methods that can determine the effects of privately owned automated vehicles (AVs) and how switching to those vehicles is going to change mobility in urban environments. The considered problem determines the routes of family owned AVs that minimize the transportation costs of that family while considering the possibility of using public transport as an alternative for some trips. We introduce a novel exact linear formulation for this problem which includes a linearized traffic congestion model and which is able to solve the user and system optimum variant of the problem to optimality. The introduced formulation can easily be adapted to consider the current situation with conventional vehicles and a situation where not only the travel time costs of the driver but also costs of the other passengers are taken into account. The main advantage of our novel formulation is that the optimal results can be obtained to explore potential changes of flows with vehicle automation in small networks. We investigated the behavior of the system, given the described scenarios, by applying our formulation to a case study.
机译:在大街上拥有无人驾驶汽车的可能性似乎比以往任何时候都更加真实。在本文中,我们专注于开发确切的方法,这些方法可以确定私人拥有的自动车辆(AV)的效果,以及切换到这些车辆将如何改变城市环境中的机动性。所考虑的问题决定了家庭拥有的AV的路线,该路线使该家庭的运输成本降至最低,同时考虑了使用公共交通工具代替某些旅行的可能性。我们针对此问题引入了一种新颖的精确线性公式,其中包括线性交通拥塞模型,该模型能够将问题的用户和系统最佳变型求解为最优。所引入的公式可以容易地适于考虑常规车辆的当前状况以及不仅考虑驾驶员的旅行时间成本而且考虑其他乘客的成本的情况。我们新颖的配方的主要优点是,可以在小型网络中使用车辆自动化来获得最佳结果,以探索流量的潜在变化。给定所描述的场景,我们通过将我们的公式应用于案例研究来研究系统的行为。

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