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Robustness of Intelligent Vehicular Rerouting Towards Non-ideal Communication Delay

机译:非理想通信延迟智能车辆重新排出的鲁棒性

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One of the main goals of Intelligent Transport Systems (ITSs) is to optimize traffic flow for the sake of saving fuel, decreasing travel time and/or reducing congestion. In order to achieve this goal, most of the numerous approaches from literature require some kind of information exchange between vehicles and the environment. Vehicles on the one hand need to provide data containing predicates, such as current velocity, position or route destination. On the other hand, a router needs a functional communication infrastructure to contribute route guidance to vehicles which are affected by traffic jams. However, variable delay or complete message loss can influence the rerouting performance significantly, since either route advices could fail to reach their recipient, or the supposed knowledge of the road conditions could be outdated. The delay requirements of various routers may be divergent, and therefore we propose two delay models which are independent of the underlying communication standard. Furthermore, this paper evaluates the existing PCMA* routing algorithm concerning its performance with varying delays and message loss probabilities by applying the introduced delay models in microscopic traffic simulations. We define constraints of both the delay and message loss probability which are required to achieve certain improvements ensuing from intelligent rerouting. The results further reveal a high robustness of the algorithm with regard to delays and message loss probabilities, which expresses itself by similarly low achieved average vehicle travel times for a large amount of the investigated simulation setups.
机译:智能传输系统(ITS)的主要目标之一是为了节省燃料,减少旅行时间和/或减少拥塞,优化交通流量。为了实现这一目标,文献中的大多数方法都需要车辆和环境之间的某种信息交换。车辆一方面需要提供包含谓词的数据,例如当前速度,位置或路线目的地。另一方面,路由器需要功能性通信基础设施,以贡献由交通拥堵影响的车辆的路由指导。然而,可变延迟或完整的消息损失可以显着影响重新排出的性能,因为路由建议可能无法达到收件人,或者可以过时地对道路状况的假设知识。各种路由器的延迟要求可能是不同的,因此我们提出了两个与底层通信标准无关的延迟模型。此外,本文通过在微观流量仿真中应用引入的延迟模型来评估其具有不同延迟和消息损耗概率的性能的现有PCMA *路由算法。我们定义了延迟和消息损耗概率的约束,这是从智能重新路由中实现某些改进所需的概率。结果进一步揭示了延迟和消息损耗概率的算法的高稳健性,其通过类似地低实现的平均载体行驶时间表示大量的调查模拟设置。

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