DocumentCode
244608
Title
WiFiHonk: Smartphone-Based Beacon Stuffed WiFi Car2X-Communication System for Vulnerable Road User Safety
Author
Dhondge, Kaustubh ; Sejun Song ; Baek-Young Choi ; Hyungbae Park
Author_Institution
Univ. of Missouri, Kansas City, MO, USA
fYear
2014
fDate
18-21 May 2014
Firstpage
1
Lastpage
5
Abstract
Despite various high-tech Vehicle-to-Vehicle (V2V) and Vehicle-to-Infrastructure (V2I) communications that have been developed for enhancing traffic safety, protecting vulnerable road users (VRU), such as pedestrians and bicyclists from the vehicles and trains still heavily relies on the traditional sound warning method. Furthermore, as smart devices continue to become highly ubiquitous, the more VRU are shutting out the safety related warning sounds. A traffic accident study shows the number of headphone-wearing VRU involved in roadside accidents has tripled since 2004. Although recently a few Car2Pedestrian communication methods have been proposed by various car makers, their practical usage is still in question. They assume VRUs´ active attention to the communication while walking, and also mostly require special communication devices to cope with the wide range of mobility. In this paper, we propose a smartphone based Car2X communication system, named WiFiHonk that can alert of potential collisions to both VRU and vehicles in order to especially protect the distracted VRU. WiFiHonk provides a practical safety means for the distracted VRU without requiring any special device using the WiFi of a smart device. It is novel in that it removes the WiFi association overhead using the beacon stuffed WiFi communication and also provides an efficient collision estimation algorithm to issue appropriate warnings. Our experimental and simulation studies validate that WiFiHonk can successfully alert the VRU within a sufficient reaction time frame.
Keywords
mobile radio; road accidents; road safety; road traffic; smart phones; wireless LAN; V2I communications; V2V communications; VRU protection; WiFi association overhead reduction; WiFiHonk; car2pedestrian communication methods; collision estimation algorithm; communication devices; headphone-wearing VRU; high-tech vehicle-to-vehicle communications; roadside accidents; smart device; smart devices; smartphone-based beacon stuffed WiFi car2X-communication system; sound warning method; traffic accident; traffic safety; vehicle-to-infrastructure communications; vulnerable road user safety; Accidents; IEEE 802.11 Standards; Roads; Safety; Sensors; Vectors; Vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference (VTC Spring), 2014 IEEE 79th
Conference_Location
Seoul
Type
conf
DOI
10.1109/VTCSpring.2014.7023146
Filename
7023146
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