A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.

Strategic noise mapping provides important information for noise impact assessment and noise abatement. However, producing reliable strategic noise mapping in a dynamic, complex working environment is difficult. This study proposes the implementation of the random walk approach as a new stochastic t...

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Main Authors: Lim Ming Han, Zaiton Haron, Khairulzan Yahya, Suhaimi Abu Bakar, Mohamad Ngasri Dimon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4398358?pdf=render
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spelling doaj-467f97a25e544fcdbd167ebc7118d1df2020-11-25T02:35:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012066710.1371/journal.pone.0120667A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.Lim Ming HanZaiton HaronKhairulzan YahyaSuhaimi Abu BakarMohamad Ngasri DimonStrategic noise mapping provides important information for noise impact assessment and noise abatement. However, producing reliable strategic noise mapping in a dynamic, complex working environment is difficult. This study proposes the implementation of the random walk approach as a new stochastic technique to simulate noise mapping and to predict the noise exposure level in a workplace. A stochastic simulation framework and software, namely RW-eNMS, were developed to facilitate the random walk approach in noise mapping prediction. This framework considers the randomness and complexity of machinery operation and noise emission levels. Also, it assesses the impact of noise on the workers and the surrounding environment. For data validation, three case studies were conducted to check the accuracy of the prediction data and to determine the efficiency and effectiveness of this approach. The results showed high accuracy of prediction results together with a majority of absolute differences of less than 2 dBA; also, the predicted noise doses were mostly in the range of measurement. Therefore, the random walk approach was effective in dealing with environmental noises. It could predict strategic noise mapping to facilitate noise monitoring and noise control in the workplaces.http://europepmc.org/articles/PMC4398358?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lim Ming Han
Zaiton Haron
Khairulzan Yahya
Suhaimi Abu Bakar
Mohamad Ngasri Dimon
spellingShingle Lim Ming Han
Zaiton Haron
Khairulzan Yahya
Suhaimi Abu Bakar
Mohamad Ngasri Dimon
A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
PLoS ONE
author_facet Lim Ming Han
Zaiton Haron
Khairulzan Yahya
Suhaimi Abu Bakar
Mohamad Ngasri Dimon
author_sort Lim Ming Han
title A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
title_short A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
title_full A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
title_fullStr A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
title_full_unstemmed A stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
title_sort stochastic simulation framework for the prediction of strategic noise mapping and occupational noise exposure using the random walk approach.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Strategic noise mapping provides important information for noise impact assessment and noise abatement. However, producing reliable strategic noise mapping in a dynamic, complex working environment is difficult. This study proposes the implementation of the random walk approach as a new stochastic technique to simulate noise mapping and to predict the noise exposure level in a workplace. A stochastic simulation framework and software, namely RW-eNMS, were developed to facilitate the random walk approach in noise mapping prediction. This framework considers the randomness and complexity of machinery operation and noise emission levels. Also, it assesses the impact of noise on the workers and the surrounding environment. For data validation, three case studies were conducted to check the accuracy of the prediction data and to determine the efficiency and effectiveness of this approach. The results showed high accuracy of prediction results together with a majority of absolute differences of less than 2 dBA; also, the predicted noise doses were mostly in the range of measurement. Therefore, the random walk approach was effective in dealing with environmental noises. It could predict strategic noise mapping to facilitate noise monitoring and noise control in the workplaces.
url http://europepmc.org/articles/PMC4398358?pdf=render
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