About Our Work

This website is results of QRDI UREP funded project with the title "Control of Environmental Noise from Road Traffic: a web-based user interface".

Project Summary

This project addresses the critical issue of urban noise pollution, particularly from road traffic which contributes 66% of overall urban noise. We're developing an innovative web-based tool that bridges the gap between technical sound metrics and community understanding. By combining real-world measurements, advanced signal processing, and interactive visualizations, users can hear and compare actual sounds before and after noise mitigation measures. This freely accessible platform helps communities make informed decisions about noise barriers and window insulation, translating complex data into relatable, playable sounds for better environmental health outcomes.

Project Objectives

1

Data Collection

Carry out comprehensive measurements to collect and analyze noise data from standard road traffic scenarios, including cases with and without control measures like barriers and double-glazed windows.

2

Signal Processing

Conduct comprehensive signal processing on literature data alongside analysis, benchmarking, and comparison against international guidelines for environmental noise assessment and standards.

3

Web Interface

Develop an innovative web-based interface utilizing data and findings from measurements and literature processing, creating the first tool of its kind in Qatar for environmental noise visualization.

Teams & Work Packages

Project Supervisors

Dr. Mohammed Hussein

Primary Research Mentor

Dr. Jamil Renno

Research Mentor

WP1

Civil Engineering

Data Collection & Measurements

Field measurements and data collection from road traffic scenarios with analysis of noise barriers and glazing systems.

Team Members

Mussab Ata

Civil Engineering Student

Turki Al Qatabri

Civil Engineering Student

WP2

Engineering

Signal Processing

Advanced signal processing, frequency domain analysis, and benchmarking against international guidelines.

Team Members

Abdullah Almubark

Mechanical Engineering Student

Galal Ban Amr

Computer Engineering Student

WP3

Computer Science

Web Development

Development of the web-based interface and user experience for interactive noise visualization.

Team Members

Mohamed Salih

Computer Science Student

Ibrahim Alsalimy

Computer Science Student

Project Timeline

Tasks 1.1, 2.1, 3.1: Preparatory Reading & Initial Planning

All

Knowledge development in environmental noise, signal processing techniques, and web interface planning.

Task 1.2: Literature Data Collection

WP1

Compiling measured noise data from literature on road traffic scenarios.

Task 2.2: Signal Processing Skills Development

WP2

Hands-on training in frequency domain processing and weightage functions.

Task 3.2: Website Planning & Research

WP3

Researching and updating initial website plan with internal feedback collection.

Task 1.3: First Field Measurements

WP1

Roadside measurements with and without noise barriers across multiple locations.

Task 2.3: Real Signal Processing

WP2

Applying signal processing knowledge to real measurement data from WP1.

Task 3.3: Initial Website Development

WP3

Building the first version of website based on previous planning.

Tasks 1.4, 2.4, 3.4: Interim Reporting & Planning

All

Collaborative interim reporting and planning for presentations, final report, and conference publication.

Task 1.5: Indoor Measurements

WP1

Measuring noise in rooms with single and double-glazed windows configurations.

Task 2.5: Data Benchmarking

WP2

Benchmarking processed data against literature to observe trends and conclusions.

Task 3.5: Website Updates

WP3

Updating website and interface based on input from other work packages.

Task 1.6: Guideline Comparison

WP1

Compiling all data and comparing against FTA environmental noise guidelines.

Task 2.6: Performance Classification

WP2

Comparing processed data against guidelines to classify countermeasure performance levels.

Task 3.6: Professional Feedback

WP3

Collecting feedback from professional engineers to refine website and interface.

Tasks 1.7, 2.7, 3.7: Final Dissemination

All

Final reporting, presentations, conference publication, and launch of complete web-based interface.