Francis N. Nwebonyi

dblp:224/4612 · DBLP profile ↗
← Back
5ranked-venue papers
4as first author
2since 2021 · last 2022
0000-0003-1566-2560ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 3 · 2 first-author · 2 since 2021Computer networks · 1 · 1 first-author
YearPublicationVenuePosition
2022 Automating the Flow of Data Between Digital Forensic Tools Using Apache NiFi
Francis N. Nwebonyi, Pavel Gladyshev
ICDF2C2
2022 Crime and Incident Watch for Smart Cities: A Sensor-Based Approach
Francis N. Nwebonyi, Pavel Gladyshev
ICDF2C1
2019 Security and Fairness in IoT Based e-Health System: A Case Study of Mobile Edge-Clouds
abstract
Through IoT, humans and objects can be connected seamlessly, to guaranty improved quality of service (QoS). IoT-driven e-Health systems benefit from such rich network setting, to transmit health information and deliver health services. It is expected to grow massively in scale, but for that to happen, several issues need to be addressed, including security and trust. Edge computing paradigms, such as Fog computing and Cloudlet, are already popular in IoT based e-Health domain. Fog nodes are leveraged to reduce latency between IoT devices and remote cloud computing infrastructure. In this work, we explain how Mobile edge-clouds, which is a less popular edge computing paradigm, can be employed to achieve similar or lower latency, at a lower cost. We also propose a lightweight mechanism for security and fairness in e-Health protocols that are based on mobile edge-clouds and other paradigms. Detailed simulation experiments show that the proposed method is scalable and can efficiently mitigate attacks that are targeted at e-Health information and the network.
Francis N. Nwebonyi, Rolando Martins, Manuel Eduardo Correia
WiMob1
2019 Reputation based approach for improved fairness and robustness in P2P protocols
Francis N. Nwebonyi, Rolando Martins, Manuel Eduardo Correia
Peer-to-Peer Netw. Appl.1
2018 Reputation-Based Security System For Edge Computing
abstract
Given the centralized architecture of cloud computing, there is a genuine concern about its ability to adequately cope with the demands of connecting devices which are sharply increasing in number and capacity. This has led to the emergence of edge computing technologies, including but not limited to mobile edge-clouds. As a branch of Peer-to-Peer (P2P) networks, mobile edge-clouds inherits disturbing security concerns which have not been adequately addressed in previous methods. P2P security systems have featured many trust-based methods owing to their suitability and cost advantage, but these approaches still lack in a number of ways. They mostly focus on protecting client nodes from malicious service providers, but downplay the security of service provider nodes, thereby creating potential loopholes for bandwidth attack. Similarly, trust bootstrapping is often via default scores, or based on heuristics that does not reflect the identity of a newcomer. This work has patched these inherent loopholes and improved fairness among participating peers. The use cases of mobile edge-clouds have been particularly considered and a scalable reputation based security mechanism was derived to suit them. BitTorrent protocol was modified to form a suitable test bed, using Peersim simulator. The proposed method was compared to some related methods in the literature through detailed simulations. Results show that the new method can foster trust and significantly improve network security, in comparison to previous similar systems.
Francis N. Nwebonyi, Rolando Martins, Manuel Eduardo Correia
ARES1