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使用图论方法对异质交通条件下的道路交通噪声进行建模。

Modelling road traffic Noise under heterogeneous traffic conditions using the graph-theoretic approach.

作者信息

Gilani Towseef Ahmed, Mir Mohammad Shafi

机构信息

Department of Civil Engineering, National Institute of Technology, Srinagar, J&K, 190006, India.

Transportation & Planning Section, Department of Civil Engineering, National Institute of Technology, Srinagar, J&K, 190006, India.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(27):36651-36668. doi: 10.1007/s11356-021-13328-4. Epub 2021 Mar 11.

Abstract

A traffic noise system involves several subsystems like road traffic subsystem, human subsystem, environment subsystem, traffic network subsystem, and urban prosperity subsystem. The study's main aim was to develop road traffic noise models using a graph theory approach involving the parameters related to road traffic subsystem. The road traffic subsystem variables selected for the modeling purposes included vehicular speed, traffic volume, carriageway width, number of heavy vehicles, and number of honking events. The interaction of the selected variables considered in the form of permanent noise function is given in the matrix form. Eigenvalues and corresponding eigenvectors are calculated for removing any human judgmental error. The permanent noise function matrix was then updated using the eigenvectors, which was ultimately utilized for obtaining the permanent noise index. Data regarding the selected variables were collected for three months, and the noise parameters included in the study were equivalent noise level (L), maximum noise level (L), and background noise level (L). A logarithmic transformation was applied to the permanent noise index and linear regression models were developed for L , L , and L respectively. The models were validated using the data collected from the same locations for nine months. The models were found to provide satisfactory results, although the results were somewhat overestimated. The method can prove beneficial for estimating future noise levels, given the expected changes in values for the independent variables considered in the study.

摘要

交通噪声系统涉及多个子系统,如道路交通子系统、人类子系统、环境子系统、交通网络子系统和城市繁荣子系统。该研究的主要目的是使用涉及道路交通子系统相关参数的图论方法来开发道路交通噪声模型。为建模目的选择的道路交通子系统变量包括车速、交通流量、车道宽度、重型车辆数量和鸣笛事件数量。以永久噪声函数形式考虑的所选变量之间的相互作用以矩阵形式给出。计算特征值和相应的特征向量以消除任何人为判断误差。然后使用特征向量更新永久噪声函数矩阵,该矩阵最终用于获得永久噪声指数。收集了三个月关于所选变量的数据,研究中包括的噪声参数有等效噪声级(L)、最大噪声级(L)和背景噪声级(L)。对永久噪声指数进行对数变换,并分别针对L、L和L建立线性回归模型。使用从相同地点收集的九个月数据对模型进行验证。尽管结果有些高估,但发现这些模型提供了令人满意的结果。鉴于研究中考虑的自变量值的预期变化,该方法对于估计未来噪声水平可能是有益的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37e0/7947378/afd47c30fdcd/11356_2021_13328_Fig1_HTML.jpg

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