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Author

L. M. Giraldo

2 papers indexed here

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Jul 2026

Digital Twin Orchestrated Software-Defined Networks for Handling Denial of Service Attacks in IoT Applications

The paper discusses the implementation and analysis of a digital-twin-orchestrated preemptive-switching scenario for sensor-data transmission over physical network interface links. The experimental setup in this work uses physical interface connections based on radio and optical interfaces, defined by the standards of IEEE 802.11n wireless local area network (WLAN) and IEEE 802.15.7-based visible light communications, respectively. Data transmission at physical interfaces is managed using a software-defined network controller that defines traffic flows based on processing commands from the network digital twin, which is modeled for telemetry analysis and decision making. The statistical average of the measurements shows a delay of less than 200 ms for achieving the switching procedure. The implementation provides benefits for wireless sensor networks and the Internet of Things, improving the availability and resilience of sensor nodes by complementing radio-sensitive environments for critical data transmission.

Satish Kumar Modalavalasa, Carlos Guerra Yanez, S. Teli et al. · 0 citations
Jul 2026

A SDN-Based Access Control Framework for Powerline Communications Networks

The proliferation of Internet of Things (IoT) devices in smart grid environments has been intensified by the need for robust, granular security in Powerline Communication (PLC) networks. Although the G.hn standard offers high-speed data rates over electrical wiring, it lacks a programmable and centralised security layer capable of dynamic access control. This paper proposes a Software-Defined Networking (SDN) architecture to enforce Media Access Control (MAC) based access control authentication at the MAC layer in a G.hn environment. By integrating the Ryu SDN controller with a simulated G.hn topology via a transparent bridging gateway, it is possible to demonstrate a Hardware-in-the-Loop (HiL) setup that enables filtering of unauthorised devices at the edge. Our proposed framework results indicate that it is effective in mitigating unauthorised access while maintaining the throughput characteristics required for high-bandwidth PLC applications.

L. M. Giraldo, Joaquín Pérez, Raimundo García et al. · 0 citations

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