Measuring the Effect of Weather Events on Long-Haul Truck ... · AASHTO 2019 GIS for Transportation...
Transcript of Measuring the Effect of Weather Events on Long-Haul Truck ... · AASHTO 2019 GIS for Transportation...
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AASHTO 2019 GIS for Transportation Symposium
Taslima AkterDoctoral Candidate, Department of Civil Engineering
University of Arkansas
Advisor: Dr. Sarah HernandezAssistant Professor, Department of Civil Engineering
University of Arkansas
Measuring the Effect of Weather Events on Long-Haul Truck Traffic Using Anonymous Truck GPS Data
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Outline
1. Background and Motivations
2. Method
3. Application
4. Discussion
5. Future Research
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Problem Statement
▪ Severe weather conditions can have major effects on truck traffic volumes
▪ Truck GPS data, a valuable source of freight movement
▪ Large data stream, how to deduce insights
Research Question
Can we develop a model that predicts Vehicle Miles Traveled (VMT)
and Vehicle Hours Traveled (VHT) changes of trucks resulting from
weather events ?
Applications
Assist state and regional transportation agencies in
developing freight-oriented programs and policies.
Assist trucking industry to better plan accurate routes
to estimate ETA and revenue miles.
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Method of the Study
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GPS Data
Weather Data
Data Inputs
Dependent Variables
Independent Variables
Model
Spatial Panel Regression
Model
Trip Length(in miles)
Daily Parameters (i.e.
precipitation, temperature,
etc.)
Extreme Events
Truck Volume
Variables
Trip Duration(in hours)
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Mobile Sensor Data: GPS Data Sample
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▪ Sample provided by the American Transportation Research Institute (ATRI)
▪ Over 35 million raw pings per week in Arkansas
▪ 10-15% coverage of truck traffic▪ 2-week sample (in 2016)
• February: 82,770 Trucks• May: 81,891 Trucks• August/September: 83,112
Trucks• November: 110,319 Trucks
LegendState BoundaryGPS Pings
Total Pings: 88,241,136
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Truck Volume from a Large GPS Data
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Collected GPS Data
National truck GPS sample2 week period, 82,000 trucks
Route Identification
Complete, fully-connected links comprising the truck path
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VMT and VHT on a Link
VMT = Daily Truck Volume × Total Daily Trip Length (in miles)
VHT = Daily Truck Volume × Total Daily Trip Duration (in hours)
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MERRA Locations in Arkansas
8Source: Modern-Era Retrospective analysis for Research and Applications (MERRA), Long Term Pavement Performance (LTPP) InfoPave Climate Tool
MERRA Zones
MERRA Locations
Road Network
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Extreme Weather Events in Arkansas
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Interstates
District Boundary
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Results: Spatial Autoregressive Models- VMT
Independent Variables
Ordinary Least Square Regression (OLS)
Spatial Autoregressive Models (SAR)
Snowfall -0.05***
Storm Events -0.17*** -0.10***
Extreme Heat -0.07*** -0.03***
Weekday 0.68*** 0.29***
Spring 0.05*** 0.02***
Summer 0.13*** 0.04***
Fall 0.10*** 0.03***
Constant 0.51*** 0.14***
Spatial, rho (ρ) 0.72***
R-squared: 0.54 0.54
AIC 829.5 214.6 10
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Applications of the Models
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Little Rock
West Memphis
Fayetteville
Dai
ly V
ehic
le M
iles
Trav
eled
Cha
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Rat
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4
3
2
1
0.5
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Discussion
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These models can capture spatial effect of weather variables on truck volume.
VMT/VHT better capture the effects of weather on rerouting or temporal delays to trips.
Unlike static traffic data collection sites, like Weigh-In-Motion (WIM) or AADT, the use of GPS allows us to measure the changes in VMT/VHT at dispersed locations.
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Future Work
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Capture re-routing behaviors of trucks:
▪ Changes in VMT and VHT are not instantaneous, but delayed over time
▪ VMT and VHT are both spatially and temporally auto-correlated
▪ Develop Space-time lag model for trucks
▪ Using Delaunay triangle with origin-destination flows
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Questions?
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Taslima AkterPhD CandidateDepartment of Civil EngineeringUniversity of ArkansasPhone: 419-418-1368Email: [email protected]
Sarah Hernandez, PhDAssistant ProfessorDepartment of Civil Engineering,
Thank You