Deploying AI-Based Applications with Serverless Computing in 6G Networks: An Experimental Study
Marc Michalke, Chukwuemeka Muonagor, Admela Jukan

TL;DR
This paper explores deploying AI applications in 6G networks using serverless computing, demonstrating performance benefits like reduced response times while maintaining accuracy through experimental comparison.
Contribution
It proposes a high-level edge-focused architecture for AI workloads in 6G and empirically evaluates serverless deployment benefits over traditional cloud setups.
Findings
Median response time decreases by around 25% in 6G serverless setup
Median accuracy remains the same between 6G serverless and cloud setups
Trade-offs exist between response time predictability and accuracy
Abstract
Future 6G networks are expected to heavily utilize machine learning capabilities in a wide variety of applications with features and benefits for both, the end user and the provider. While the options for utilizing these technologies are almost endless, from the perspective of network architecture and standardized service, the deployment decisions on where to execute the AI-tasks are critical, especially when considering the dynamic and heterogeneous nature of processing and connectivity capability of 6G networks. On the other hand, conceptual and standardization work is still in its infancy, as to how to categorizes ML applications in 6G landscapes; some of them are part of network management functions, some target the inference itself, while many others emphasize model training. It is likely that future mobile services may all be in the AI domain, or combined with AI. This work makes…
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Taxonomy
TopicsIoT and Edge/Fog Computing · Blockchain Technology Applications and Security
