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Research PaperResearchia:202609.10076

HybridFLow: SDN-Orchestrated Client Partitioning for Hybrid Federated Learning

Osama Abu Hamdan

Abstract

Cross-silo Federated Learning (FL) enables geographically distributed institutions to collaboratively train machine learning models without sharing raw data. In wide-area deployments, however, communication delays often dominate round completion time and exacerbate the straggler effect. Hybrid FL addresses this challenge by combining synchronous and asynchronous client participation, but effective partitioning requires visibility into network conditions such as shared bottlenecks, link utilizati...

Submitted: September 10, 2026Subjects: Machine Learning; Data Science

Description / Details

Cross-silo Federated Learning (FL) enables geographically distributed institutions to collaboratively train machine learning models without sharing raw data. In wide-area deployments, however, communication delays often dominate round completion time and exacerbate the straggler effect. Hybrid FL addresses this challenge by combining synchronous and asynchronous client participation, but effective partitioning requires visibility into network conditions such as shared bottlenecks, link utilization, and path contention that individual clients cannot observe. We present HybridFLow, a closed-loop SDN-driven orchestration framework that integrates network-layer intelligence directly into hybrid FL. Leveraging the SDN controller's global topology view, HybridFLow generates calibrated per-client communication-time estimates before each training round and uses them to partition clients into synchronous and asynchronous groups while balancing round latency and update staleness. After each round, measured communication times are fed back to the controller to continuously refine future predictions. Experimental results across multiple network topologies show that HybridFLow reaches 80% target accuracy 33-40% faster than SmartFLow and reduces average round duration by 30-40 seconds, while FedAsync fails to reach the target accuracy under non-IID data distributions.


Source: arXiv:2609.10404v1 - http://arxiv.org/abs/2609.10404v1 PDF: https://arxiv.org/pdf/2609.10404v1 Original Link: http://arxiv.org/abs/2609.10404v1

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Submission Info
Date:
Sep 10, 2026
Topic:
Data Science
Area:
Machine Learning
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