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An adaptive routing approach for personal rapid transit

机译:一种适用于个人快速交通的自适应路由方

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摘要

Personal Rapid Transit (PRT) is a public transportation mode, in which small automated vehicles transport passengers on demand. Central control of the vehicles leads to interesting possibilities for optimized routings. The complexity of the involved routing problems together with the fact that routing algorithms for PRT essentially have to run in real-time often leads to the choice of fast greedy approaches. The most common routing approach is arguably a sequential one, where upcoming requests are greedily served in a quickest way without interfering with previously routed vehicles. The simplicity of this approach stems from the fact that a chosen route is never changed later. This is as well the main drawback of it, potentially leading to large detours. It is natural to ask how much one could gain by using a more adaptive routing strategy. This question is the main motivation of this article. In this paper, we first suggest a simple mathematical model for PRT, and then introduce a new adaptive routing algorithm that repeatedly uses solutions to an LP as a guide to route vehicles. Our routing approach incorporates new requests in the LP as soon as they appear, and reoptimizes the routing of all currently used vehicles, contrary to sequential routing. We provide preliminary computational results that give first evidence of the potential gains of an adaptive routing strategy, as used in our algorithm.
机译:个人快速公交(PRT)是一种公共交通模式,其中小型自动车辆按需运输乘客。车辆的中央控制导致优化路线的有趣可能性。所涉及的路由问题的复杂性以及PRT的路由算法必须必须实时运行这一事实常常导致人们选择快速贪婪的方法。最常见的路由方法可以说是一种顺序方法,其中以最快的方式贪婪地处理即将到来的请求,而不会干扰先前路由的车辆。这种方法的简单性源于以下事实:所选的路由以后不会更改。这也是它的主要缺点,有可能导致较大的弯路。很自然地问,使用一种更具适应性的路由策略能获得多少收益。这个问题是本文的主要动机。在本文中,我们首先提出了一个简单的PRT数学模型,然后介绍了一种新的自适应路由算法,该算法反复使用LP的解作为引导车辆的路线。我们的路由方法会在新请求出现时立即将它们合并到LP中,并与顺序路由相反,重新优化所有当前使用的车辆的路由。我们提供了初步的计算结果,为我们的算法中使用的自适应路由策略的潜在收益提供了第一个证据。

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