RELEVANT
RESEARCH EXPERIENCE:
At
Jordan University of Science and Technology (J.U.S.T.), Irbid, Jordan
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Geographic Information
Systems (GIS) Technological Applications in the Civil Engineering Areas.
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Global Positioning Systems
(GPS) Technology Usage in Coordinates Determination.
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Integration of GIS,
Remote-Sensing, and GPS.
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Evaluation of bituminous
mixtures stripping using conventional and image processing techniques.
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Development of a knowledge-based
system for pedestrian road crossing behavior through video cameras.
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Using vision technology
to evaluate driver’s behavior at intersections.
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Studying the relationship
between air pollution, land-use, traffic congestion, population distribution,
topography, and types of vehicles in use using GIS.
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A stereometric knowledge-based
system for maintenance of street network.
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A semi-automated image-based
approach to quantify VMA and aggregate size.
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Parametric studies on
planar wall calibration for CCD cameras.
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Information Technology
developments to Road Maintenance Management Systems (RMMS).
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Monitoring of monuments
and archeological sites using ground-based photogrammetry.
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Evaluation of road maintenance
system in Jordan.
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Influence of aggregate
type and gradation on voids of asphalt concrete pavements.
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Development of a modified
theodolite instrument.
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A new methodology for
evaluating geometric performance of highways.
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Potential of computer
vision in quantification of rut depth.
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Development of a more
sophisticated stereometric vision system.
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Innovative approach
toward better road maintenance management systems
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Integration of knowledge-based
construction management with metric vision
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Soil structure interaction
of highly expansive Irbid soil
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Development of a vision
system application for payment arrangement for construction.
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Studying the potential
of close-range photogrammetry in geotechnical engineering, agriculture,
and pavement rehabilitation.
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Development of a knowledge-based
system for pavement maintenance.
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Integration of computer
tools toward computerized educational system.
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Development of a vision
system to measure traffic parameters.
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Development of a graphical-digital
system for road maintenance priorities.
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Study the potential
of close-range photogrammetry in pavement segregation evaluation.
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Development of an educational
system for photogrammetry and plane surveying.
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Development of digital
maps and hazardous locations for land slides in Jordan.
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Development of an automated
stereometric knowledge-based CAD system for construction management
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Studying vegetation
distribution using ancillary and remote sensing data
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Assessment of road conditions
using artificial neural network
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The effect of misalignment
on structural behavior of some selected buildings constructed in Jordan
At
the Advanced Construction Technology Center, University of Illinois at
Urbana-Champaign, Urbana, Illinois, U.S.A.
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Combined traditional
and state-of-the-art ideas of PC-based vision systems to produce a new
stereometric vision system.
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Designer and developer
of a DRSTEREO software package for three-dimensional measurement.
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Developer and designer
of innovative ideas for a CCD camera calibration software package using
planer object constraint from construction sites, without using 3-D control
field.
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Designed and developed
a knowledge-based system for close-range photogrammetry.
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Participating in developing
a stereo computer vision system for three-dimensional gagging to map human
bodies.
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Rapid and robust algorithms
to generate information on a 3-D scene from construction site stereo images
on the Personal Computer.
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Initiated, collaborated,
and lead team projects with professors and graduate students that resulted
in 5 scientific publications.
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Involve in designing
a vision system to measure some traffic parameters.