Results 11 to 20 of about 1,041 (249)
A Threat Model for Vehicular Fog Computing
Vehicular Fog Computing (VFC) facilitates the deployment of distributed, latency-aware services, residing between smart vehicles and cloud services. However, VFC systems are exposed to manifold security threats, putting human life at risk.
Timo Klein +5 more
doaj +4 more sources
Toward Secure and Trustworthy Vehicular Fog Computing: A Survey
The integration of fog computing in vehicular networks has led to significant advancements in road safety, traffic control, entertainment, and comfort services.
Ossama Nazih +3 more
doaj +2 more sources
Interference Aware Service Migration in Vehicular Fog Computing [PDF]
Vehicular Fog Computing (VFC) is a promising technique to enable ultra low service latency by exploiting the computation and storage resources of both Roadside Units (RSUs) and Serving Vehicles (SVs) such as buses and trams with rich resources. To tackle
Shuxin Ge, Meng Cheng, Xiaobo Zhou
doaj +2 more sources
A Privacy-Preserving Fog Computing Framework for Vehicular Crowdsensing Networks
Recently, the study of road surface condition monitoring has drawn great attention to improve the traffic efficiency and road safety. As a matter of fact, this activity plays a critical role in the management of the transportation infrastructure ...
Jiannan Wei +4 more
doaj +4 more sources
Data-Driven Capacity Planning for Vehicular Fog Computing [PDF]
The strict latency constraints of emerging vehicular applications make it unfeasible to forward sensing data from vehicles to the cloud for processing. To shorten network latency, Vehicular fog computing (VFC) moves computation to the edge of the Internet, with the extension to support the mobility of distributed computing entities. In other words, VFC
Akgul, Özgür +6 more
openaire +4 more sources
On-demand Vehicular Fog Computing for Beyond 5G Networks
Emerging compute-intensive and latency-sensitive vehicular applications are expected to be deployed at the edge instead of the cloud to shorten the network latency. Mobile fog nodes carried by moving vehicles have been proposed to complement the stationary fog nodes co-located with base stations to handle the spatio-temporal variations of the demand in
Akgul, Ozgur Umut +5 more
openaire +3 more sources
Energy-Latency Tradeoff for Dynamic Computation Offloading in Vehicular Fog Computing [PDF]
Vehicular Fog Computing (VFC) provides solutions to relieves overload cloudlet nodes, reduces service latency during peak times, and saves energy for battery-powered cloudlet nodes by offloading user tasks to a vehicle (vehicular node) by exploiting the under-utilized computation resources of nearby vehicular node.
Rahul Yadav +4 more
openaire +2 more sources
Driven by the increasing number of connected vehicles and related services, powerful communication and computation capabilities are needed for vehicular communications, especially for real-time and safety-related applications. A cellular network consists
Jun Li +6 more
doaj +1 more source
Vehicular Fog Computing-Planning and Design
Abstract With the advent of Internet of Vehicles (IoV), coupled with enormous number of devices performing computational and storage tasks between the cloud and users, Vehicular Fog Computing (VFC) can be an answer to the surging challenges in today’s Intelligent Transportation Systems (ITS). However, the decentralized and heterogeneous nature of VFC
Md. Muzakkir Hussain +2 more
openaire +1 more source
QoS Aware and Fault Tolerance Based Software-Defined Vehicular Networks Using Cloud-Fog Computing
Software-defined network (SDN) and vehicular ad-hoc network (VANET) combined provided a software-defined vehicular network (SDVN). To increase the quality of service (QoS) of vehicle communication and to make the overall process efficient, researchers ...
Sidra Abid Syed +8 more
doaj +1 more source

