Abbrevation
IEEE Auto-IoT
City
Milan
Country
Italy
Deadline Paper
Start Date
End Date
Abstract

The future network infrastructure for vehicular environments will increase the pervasiveness of the Internet and the overall connectivity by integrating every “object” (e&#046;g&#046;, passengers’ smart phones, vehicles’ sensors, infrastructures and external management platform) forming an intelligent vehicular transportation system&#046; IoT supported by vehicular networks will be a key enabler for new geo&#8211;spatial information mapping communities&#046; Using the advanced communication and sensor capabilities hosted by vehicles, these IoT communities have the potential to reach a wide range of objectives at more cost effective ways&#046; Applications for such a promising combination of information production range from providing road safety and driver assistance, to mapping road status (e&#046;g&#046;, road congestion status, road conditions and maintenance status), to estimating the &#8242;greenens’ of various road segments&#046;<br>Topics of interest<br>&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;&#8211;<br>This workshop seeks original papers &#8211; not published or currently under review for another workshop, conference, or journal &#8211; in the area of automotive IoT, integrations of vehicular sensor networks with IoT and advanced communication and networking technologies applied in vehicular systems&#046; The areas of interest include, but are not limited to:<br>*Connected vehicles, communications, networking and applications in IoT<br>*IoT for autonomous cars and driving systems<br>*IoT cloud computing and management platform for connected vehicles<br>*In&#8211;car electronics, embedded integration of wireless vehicular communications with IoT<br>*Mobile vehicular sensor networks<br>*Interworking with sensor network technologies<br>*Transportation cyber&#8211;physical networks<br>*Mobility for IoT<br>*RF technologies, antenna design, physical layer and propagation models<br>*Spectrum, radio resource and interference management<br>*Intra/Inter&#8211;vehicle communications&#046;<br>*Wireless enabled intelligent transportation systems<br>*Applications (Telematics, Ecall, toll collection, traffic information, wireless diagnosis, etc&#046;)<br>*Vehicular social networks in IoT<br>*Architecture, networking protocols, QoS and cross&#8211;layer optimization design<br>*Security, liability and privacy<br>*Standards development, business models and policies<br>*Testbeds and simulation platforms<br>*Field trials and deployments<br>