Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/24725
Title: contextually and identity aware 5G services
Authors: Ali, Kareem
Advisors: Cosmas, J
Meng, H
Keywords: 5G real live streaming;5G localisation coverage;5G localisation accuracy;multiaccess edge cloud computing;mitigation of DDoS attacks on DHCP servers
Issue Date: 2022
Publisher: Brunel University London
Abstract: The fifth generation (5G) mobile networks aim to be ten times faster than the existing 4G connection, whilst providing low latency, and flexibility. Hence, various alterations are planned to the existing network infrastructure to be able to reach the 5G expected performance levels. The main technologies that were used, to ensure high performance, flexible network, and efficient resource allocation, are Software Defined Network and Network Function Virtualization. As these technologies are replacing the device-based architecture with, a service-based architecture. This thesis provides a design of location database interactive web interface and interactive mobile application. The implementation of real time video streaming location server, the streaming system's performance parameters demonstrated a high level of QoS (0.07ms jitter and 9.53ms delay). In regard to experimental examination, it measured the localisation coverage, accuracy measurements and a highly scalable security solution. The localisation coverage and accuracy measurements were achieved through the mmWave and VLC link transmitters. The proposed simulated annealing algorithm aimed at data optimisation for location measurements accuracy showed results of the average location error of x and y which showed significant improvement from x= 22.5 and y=21.6 to x=11.09 and y= 11.63. The proposed indoor location security solution showed significant results, as it provides a high scalability solution using the VNF. The solution showed that it was not 100% effective, as some of the fake discover packets still reached the DHCP server. This was due to the high load of traffic passing through the network. Nonetheless, 90% of the fake DHCP discover packets never reached the DHCP server because the scripts began blocking all fake discover packets after realising it was an attack. This conveys that the proposed system was able to run successfully without crashing or overloading the controller. Overall, the main challenges facing 5G have been addressed with their proposed solutions, which showed promising results. Conclusively showing that there is a lot more space for technological advancements to support the future of mobile networks.
Description: This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University London
URI: https://bura.brunel.ac.uk/handle/2438/24725
Appears in Collections:Electronic and Computer Engineering
Dept of Electronic and Electrical Engineering Theses

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