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Ivan Vidal

Publications and source records attributed to Ivan Vidal.

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Quditto: Emulating and Orchestrating Distributed QKD Network Deployments

Quantum Key Distribution (QKD) offers information-theoretic security by leveraging quantum mechanics, yet the cost and complexity of dedicated hardware and fiber infrastructure have so far limited large-scale deployment and experimentation. In this paper, we introduce Quditto, an automated open-access emulation platform that combines high-fidelity quantum-channel modeling with a standardized key-delivery API, enabling users to interact with the emulated network exactly as they would with real QKD hardware. Quditto modular design supports pluggable protocol implementations, complex key management schemes and detailed channel models, including variable attenuation and decoherence. We validate Quditto by deploying networks of various sizes and demonstrate its flexibility through two proof-of-concept scenarios featuring eavesdropper attacks and heterogeneous channel conditions.

quant-ph

Exploring the Use of RPAs as 5G Points of Presence

This paper presents an early exploration and preliminary results on the use of Remotely Piloted Aircrafts (RPA) as 5G points of presence. The use of RPAs in the 5G arena would enable a cost-effective deployment of functions over mobile nodes that could be integrated on demand into the programmable and unified 5G infrastructure, enhancing the capacity of the network to flexibly adapt to the particular service requirements in a geographical area. As a first step, we evaluate the feasibility and the cost, in terms of energy consumption, of using virtualisation techniques over resource-constrained aerial vehicle platforms, as a fundamental software technology in the evolution towards 5G. We complement this evaluation presenting a proof-of-concept that considers the use of these platforms to enable real-time 5G communications in emergency cases.

cs.NI