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1 A Google-Map-Based Arterial Traffic Information (GATI) System Authors: Yao-Jan Wu Dr. Yinhai Wang Dr. Dalin Qian Date: 10/03/2007
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2 Outline Introduction System Architecture Database Design Implementation Conclusion and Future work
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3 Introduction System Architecture Database Design Implementation Conclusion and Future work
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4 Web Based Traffic Information System Washington State Department of TransportationWashington State Department of Transportation –Puget Sound Traffic Flow MapPuget Sound Traffic Flow Map
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5 Google-based Traffic Information System Seymour, E.J. Miller, B.(2007). Google-Based Mapping System for Traffic Management Center Web Navigation, TRB –http://daltrans.org/http://daltrans.org/
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6 Arterial Traffic Information System Bellevue Real-Time Traffic Map –Not in right scale –Less interactive –Research? Source: http://www.ci.bellevue.wa.us/
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7 Introduction System Architecture Database Design Implementation Conclusion and Future work
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8 System Architecture STAR Lab
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9 Introduction System Architecture Database Design Traffic Data from the City of Bellevue Pre-process Implementation Conclusion and Future work
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10 Traffic Data from the City of Bellevue The city of Bellevue [Liang, 2006] –177 signalized intersections –More than 840 advance detector –Around 465 links (varied).
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11 Pre-process Locate all intersections (nodes) Build up link-intersection relation table Import Data into Database –Link Data –Intersection Data –Traffic Data
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12 Traffic Data All link data –One minute update file (with all the links for the flow map) –Filename name: 0607121314.csv Link # Link ID Smooth Volume Smooth Occupancy Cycle length Plan # running Color code Incident code
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13 All link data Link description –Fxxxddmn (e.g. F001EBT1) –xxx= Intersection # –dd= Direction (EB, WB, NB, SB) –m= Movement: (L)eft, (T)hru, (R)ight –n= # of lanes Link # Link ID Smooth Volume Smooth Occupancy Cycle length Plan # running Color code Incident code
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14 All link data Date Weekday Time Link ID Link Description volume Occupancy Volume+K Cycle length Plan# Color code Color code [Liang, 2006] –1,2=green (light) –3=yellow (Moderate) –4=red (Heavy) –5=black (Severe) –0=gray (No data)
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15 Locate all intersections Saving Data with GXmlHttp (Ajax!) Do it manually with reference to the Map of Signalized Intersection
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17 All Intersections
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18 Build up link-intersection relation table Do it manually with reference to the Map of Signalized Intersection Link # Link ID Smooth Volume Smooth Occupancy Cycle length Plan # running Color code Incident code
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19 Database Three tables have to be built in MySQL database –Traffic data table –Link Data table –Link_Intersection table
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20 Relationships among tables
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21 Introduction System Architecture Database Design Implementation Conclusion and Future work
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22 Interface
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23 Flowchart
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24 FTP Downloader Functions –Data Downloading –Generate real-time XML data –Update database –Archive data feeds
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25 Traffic Flow Map
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26 Conclusion and Future Work Conclusion –Low cost (MySQL, Apache server, PHP, etc) –Easy to implement Future work –More traffic information can be shown –Analytical tools Versatile Query Real-time evaluation (Arterial, network) functions
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27 More Info STAR Lab (http://www.uwstarlab.org/)
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28 2008 TRB Annual Meeting Washington D.C. GATI Ver.2
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29 Questions? yaojan@u.wasington.edu
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