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Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis Ying (Ariel) Luo, M.Sc., E.I.T. Traffic Safety Spatial Analyst City of Edmonton, Office of Traffic Safety

Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

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Page 1: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Ying (Ariel) Luo, M.Sc., E.I.T.Traffic Safety Spatial AnalystCity of Edmonton, Office of Traffic Safety

Page 2: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis
Page 3: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

City of Edmonton Office of Traffic Safety

• Established in 2006, first municipal office of traffic safety

in North America

• Five “E”s traffic safety strategy: Engineering, Enforcement,

Education, Evaluation and Engagement

• Focusing on traffic safety engineering, automated

enforcement and speed management, data analytics and

road user behavior studies

Page 4: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

OTS Ultimate Goal: OTS Ultimate Goal:

00Fatal and Injury Collisions in EdmontonFatal and Injury Collisions in Edmonton

Page 5: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Outline

Project background Network-based traffic safety spatial analysis

Objectives Challenges Spatial Data Extract-Transform and Load (ETL)

using FME

Page 6: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Project background

Ran-off-road is the most severe collision cause in the City of Edmonton

Page 7: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Project background

Page 8: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Project background

Page 9: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Network Kernel Density Estimation

Identify hot spots along the roadway network

Density of seg. s (#collisions/km)

Summation of segments within search bandwidth

Search bandwidth

distance between collision i to end node of segment s

Page 10: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Network-based spatial analysis

Collisions are network constrained events!

City of Edmonton ROR Collisions Hot Spot Map (Grid-based)

Any distance related analysis will need network distance, instead of Euclidean distance

Page 11: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Network Kernel Density Estimation

Identify hot spots along the roadway network

Density of seg. s (#collisions/km)

Summation of segments within search bandwidth

Search bandwidth

distance between collision i to end node of segment s

Page 12: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Step 1: Build Network Topology

Segmentation: custom transformers Build network connectivity: some of the polylines

are drawn in opposite direction/ two-way segments are drawn in single line

Page 13: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Step 2: snap collision points to unit segments

Challenge- Snap to the correct direction

Page 14: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Step 3: Estimate density for each unit segment

For each unit segment, find

collisions within search bandwidth;

Calculate K function for individual

collision to the analysis segment;

Get segment kernel density.

Over 14,000Over 14,000

Over 6,000Over 6,000

Page 15: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

City of Edmonton ROR Collisions Hot Spot Map (2009-2014,network-based)

(Grid-based hot spot map)

Page 16: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Location specific treatment

Page 17: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Next step- spatial correlation analysis

Spatial components

Alcohol outlet locations

Land use pattern

Infrastructure information (e.g. traffic control)

Enforcement activities

Socio-ecomonic factors

Non-spatial components

Weather, geometry, traffic volume etc.

Page 18: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Spatial Correlation Example (qualitative visualization)

Weekend Late-night ROR Density vs. Alcohol Outlets Density

Page 19: Using FME to Manipulate Various Sources of Data for Traffic Collision Spatio-temporal Correlation Analysis

Thank You!

Questions?

For more information: Ying (Ariel) Luo: [email protected] City of Edmonton, Office of Traffic Safety

http://www.edmonton.ca/transportation/traffic-safety.aspx