FogWise: On the limits of the coexistence of heterogeneous applications on Fog computing and Internet of Vehicles

[1]  Antonio Brogi,et al.  Container-Based Support for Autonomic Data Stream Processing Through the Fog , 2017, Euro-Par Workshops.

[2]  Woei-Jiunn Tsaur,et al.  DANS: A Secure and Efficient Driver-Abnormal Notification Scheme With IoT Devices Over IoV , 2019, IEEE Systems Journal.

[3]  Xiaoyan Kui,et al.  The Characterizes of Communication Contacts Between Vehicles and Intersections for Software-Defined Vehicular Networks , 2015, Mob. Networks Appl..

[4]  Blesson Varghese,et al.  Resource Management in Fog/Edge Computing , 2018, ACM Comput. Surv..

[5]  David Lillethun,et al.  Mobile fog: a programming model for large-scale applications on the internet of things , 2013, MCC '13.

[6]  Rajkumar Buyya,et al.  iFogSim: A toolkit for modeling and simulation of resource management techniques in the Internet of Things, Edge and Fog computing environments , 2016, Softw. Pract. Exp..

[7]  Ichiro Satoh A Framework for Data Processing at the Edges of Networks , 2013, DEXA.

[8]  Enrique Saurez,et al.  Incremental deployment and migration of geo-distributed situation awareness applications in the fog , 2016, DEBS.

[9]  Arun Kumar Sangaiah,et al.  A Survey on software-defined networking in vehicular ad hoc networks: Challenges, applications and use cases , 2017 .

[10]  Sateesh Addepalli,et al.  Fog computing and its role in the internet of things , 2012, MCC '12.

[11]  Kelvin Lopes Dias,et al.  A platform for cloudification of network and applications in the Internet of Vehicles , 2020, Trans. Emerg. Telecommun. Technol..

[12]  Harry Chen,et al.  Dynamic Service Discovery for Mobile Computing: Intelligent Agents Meet Jini in the Aether , 2004, Cluster Computing.

[13]  Susana Sargento,et al.  Assessing the reliability of fog computing for smart mobility applications in VANETs , 2019, Future Gener. Comput. Syst..

[14]  Qun Li,et al.  A Survey of Fog Computing: Concepts, Applications and Issues , 2015, Mobidata@MobiHoc.

[15]  Sudip Misra,et al.  Theoretical modelling of fog computing: a green computing paradigm to support IoT applications , 2016, IET Networks.

[16]  Kelvin Lopes Dias,et al.  Network and Cloudlet Selection for Computation Offloading on a Software-Defined Edge Architecture , 2019, GPC.

[17]  A. Varga,et al.  Using the OMNeT++ discrete event simulation system in education , 1999 .

[18]  Joel J. P. C. Rodrigues,et al.  Fog-Based Crime-Assistance in Smart IoT Transportation System , 2018, IEEE Access.

[19]  Mianxiong Dong,et al.  Multiattribute-Based Double Auction Toward Resource Allocation in Vehicular Fog Computing , 2020, IEEE Internet of Things Journal.

[20]  Roy H. Campbell,et al.  What is the complexity of a distributed computing system? , 2007, Complex..

[21]  Rapeepat Ratasuk,et al.  Recent Advances in M2M Communications and Internet of Things (IoT) , 2017, Int. J. Wirel. Inf. Networks.