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首页> 外文期刊>Noise Control Engineering Journal >Rapid updating of 3D road traffic noise maps in large cities
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Rapid updating of 3D road traffic noise maps in large cities

机译:在大城市中快速更新3D道路交通噪声图

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摘要

A rapid updating system of three-dimensional road traffic noise maps is presented. The system described in this paper primarily consists of two parts. The first part is an optimized noise update algorithm, which can significantly improve the update speed for large scale noise maps by reducing the amount of calculation work. To make full use of scattered computing resources, the second part is a distributed computation system with high simplicity and extensibility and the ability of self-balance. For traffic flow data gathered in large cities, a model that uses a speed-density relationship is developed to estimate the traffic volume from the Global Positioning System (GPS) data collected by floating cars. Finally, an experiment was performed to analyze the efficiency of both the distributed computation system and the optimized algorithm. The outcomes show that the distributed computation system has a near-linear speedup and the optimized algorithm can update a noise map of a 5.25 km(2) area with 446,367 noise receiver points using about 96 s. Thus, for a large city with an area of approximately 500 km(2), such as the central area of Guangzhou, its noise map can be updated hourly using only 3 personal computers. (C) 2016 Institute of Noise Control Engineering.
机译:提出了一种三维道路交通噪声图的快速更新系统。本文描述的系统主要由两部分组成。第一部分是优化的噪声更新算法,它可以通过减少计算工作量来显着提高大型噪声图的更新速度。为了充分利用分散的计算资源,第二部分是具有高度简便性和可扩展性以及自平衡能力的分布式计算系统。对于在大城市中收集的交通流数据,开发了一种使用速度-密度关系的模型,以根据浮动汽车收集的全球定位系统(GPS)数据估算交通量。最后,通过实验分析了分布式计算系统和优化算法的效率。结果表明,分布式计算系统具有近乎线性的加速,并且优化算法可以用约96 s的时间更新5.25 km(2)区域的噪声图,其中包含446,367个噪声接收点。因此,对于一个面积约为500 km(2)的大城市,例如广州的中心地区,其噪声图只能使用3台个人计算机每小时进行更新。 (C)2016噪声控制工程研究所。

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