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Rodolfo S. Villaça

Publications and source records attributed to Rodolfo S. Villaça.

2 recordsLinked to original sources

Asynchronous Probability Ensembling for Federated Disaster Detection

Quick and accurate emergency handling in Disaster Decision Support Systems (DDSS) is often hampered by network latency and suboptimal application accuracy. While Federated Learning (FL) addresses some of these issues, it is constrained by high communication costs and rigid synchronization requirements across heterogeneous convolutional neural network (CNN) architectures. To overcome these challenges, this paper proposes a decentralized ensembling framework based on asynchronous probability aggregation and feedback distillation. By shifting the exchange unit from model weights to class-probability vectors, our method maintains data privacy, reduces communication requirements by orders of magnitude, and improves overall accuracy. This approach enables diverse CNN designs to collaborate asynchronously, enhancing disaster image identification performance even in resource-constrained settings. Experimental tests demonstrate that the proposed method outperforms traditional individual backbones and standard federated approaches, establishing a scalable and resource-aware solution for real-time disaster response.

cs.LG↗

MM-INT: Telemetry in Programmable Switches with Multiple Queues using Source-based Multipath Routing

This article emphasizes the importance of queues associated with the ports of switches in network monitoring. Traditionally, data collection about these queues is done using programmable data planes and telemetry based on INT (In-band Network Telemetry) probes, assuming there is only a single queue per output port. The MM-INT (Multiqueue Multicast - INT) is a solution that utilizes registers to store data from all queues and ports, enabling the efficient collection of monitoring information. The MM-INT avoids probe overload and employs the origin-based routing mechanism and multicast trees for the probes. The results demonstrate significant reductions in the number of probes sent compared to other traditional solutions found in the literature.

cs.NI↗