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Traffic condition monitoring using weighted kernel density for intelligent transportation

机译:利用加权核密度进行交通状况监控,实现智能交通

摘要

Smart transportation is an application of intelligent system on transportation domain, expected to bring the society environmental and economic advantages. By combining with IoT techniques, the concept is being enhanced and raised to a system level. Numerous data are able to collect and effective analysis technique is needed. Here in this paper, we proposed a framework of employing IoT technique to construct a free time navigation system. The system aims at providing a real-time quantification of traffic conditions and suggests optimal route based on the information retrieved. The system can be basically separated into two major components: (i) the traffic condition estimation module and the (ii) real-time routing algorithm. In the first component, traffic conditions of roads will be estimated based the information collected from sensors installed on vehicles. Based on these location and speed information, the traffic condition can be quantified using a weighted kernel density estimation (WKDE) function. This function is a function of time and provides a real time insight of the overall traffic condition. By combining this information and the topological structure of the road network, a more accurate time consumption on each road can be estimated and hence enable a better routing.
机译:智能交通是智能系统在交通领域的一种应用,有望为社会带来环境和经济优势。通过与物联网技术相结合,该概念得到了增强并提升到系统级别。能够收集大量数据,因此需要有效的分析技术。在本文中,我们提出了一种利用物联网技术构建空闲时间导航系统的框架。该系统旨在提供交通状况的实时量化,并根据检索到的信息建议最佳路线。该系统基本上可以分为两个主要部分:(i)交通状况估计模块和(ii)实时路由算法。在第一部分中,将基于从安装在车辆上的传感器收集的信息来估算道路的交通状况。基于这些位置和速度信息,可以使用加权核密度估计(WKDE)函数来量化交通状况。此功能是时间的函数,可实时了解整体交通状况。通过将此信息与路网的拓扑结构相结合,可以估算出每条道路上更准确的时间消耗,从而实现更好的路线选择。

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