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  4. Integration of a road traffic noise model (ASJ) and traffic simulation (AVENUE) for a built-up area
 
conference paper

Integration of a road traffic noise model (ASJ) and traffic simulation (AVENUE) for a built-up area

Bhaskar, A.  
•
Chung, E.
•
Kuwahara, M.
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2004
Tenth International Conference on Urban Transport and the Environment in the 21st Century, URBAN TRANSPORT X
Advances in Transport

A road traffic noise prediction model (ASJ MODEL-1998) has been integrated with a road traffic simulator (AVENUE) to produce the Dynamic areawide Road traffic NoisE simulator-DRONE. This traffic-noise-GIS based integrated tool is upgraded to predict noise levels in built-up areas. The integration of traffic simulation with a noise model provides dynamic access to traffic flow characteristics and hence automated and detailed predictions of traffic noise. The prediction is not only on the spatial scale but also on temporal scale. The linkage with GIS gives a visual representation to noise pollution in the form of dynamic areawide traffic noise contour maps. The application of DRONE on a real world built-up area is also presented.

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Type
conference paper
Author(s)
Bhaskar, A.  
Chung, E.
Kuwahara, M.
Oshino, Y.
Date Issued

2004

Published in
Tenth International Conference on Urban Transport and the Environment in the 21st Century, URBAN TRANSPORT X
Volume

16

Start page

783

End page

794

Subjects

Areawide noise simulation

•

DRONE

•

Dynamic noise simulation

•

GIS for traffic noise

•

Noise contour

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Noise pollution

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Traffic noise in built-up areas

•

Attenuation

•

Cost benefit analysis

•

Cost effectiveness

•

Geographic information systems

•

Noise abatement

•

Noise pollution

•

Parameter estimation

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Vehicles

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Areawide noise simulation

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Dynamic noise simulation

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Noise contours

•

Traffic noise prediction

•

Street traffic control

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LAVOC  
Event nameEvent placeEvent date
Advances in Transport

Dresden

2004

Available on Infoscience
January 31, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/17325
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