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An Experimental Evaluation of VPA and in-Place Resource Resizing in Kubernetes under Dynamic Workloads

  • Hadil Bouasker
  • , Massinissa Ait Aba
  • , Abdenour Yasser Brahmi
  • , Hind Castel-Taleb
  • , Badii Jouaber
  • CNRS UMR 5157 SAMOVAR

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Efficient resource management remains a main challenge in Kubernetes, where scaling plays a key role in ensuring that resource provisioning adapts to workload variability. Vertical Pod Autoscaler (VPA) is the default mechanism in Kubernetes for vertical scaling, but its reliance on evicting pods to apply new resource values often disrupts applications. To address this, Kubernetes introduced In-Place Resource Resizing (IRR), which allows CPU and memory requests to be updated directly on running pods without eviction. In this paper, we experimentally evaluate VPA combined with IRR under dynamic and longrunning workloads. We designed and implemented a trafficdriven ns-3 workload to generate realistic CPU and memory variations over time, and developed a controller that bridges VPA recommendations with IRR to enable automated, eviction-free vertical scaling while considering QoS-related constraints defined by Kubernetes. Our evaluation analyzes the stability and responsiveness of IRR under different workload intensities, and extends the analysis to power consumption. The results show that eviction-free vertical scaling with IRR provides more stable resource and power behavior compared to the traditional VPA.

Original languageEnglish
Title of host publication2026 IEEE 12th International Conference on Network Softwarization
Subtitle of host publicationAutonomous and Reliable Softwarized Networks in the Age of Distributed Intelligence, NetSoft 2026 - Proceedings
EditorsProsper Chemouil, Stefan Schmid, Ilhem Fajjari, Israat Haque, Diogo Mattos, Davide Borsatti, Helge Parzyjegla
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages225-230
Number of pages6
ISBN (Electronic)9798331563820
DOIs
Publication statusPublished - 1 Jan 2026
Event12th IEEE International Conference on Network Softwarization, NetSoft 2026 - Berlin, Germany
Duration: 29 Jun 20263 Jul 2026

Publication series

Name2026 IEEE 12th International Conference on Network Softwarization: Autonomous and Reliable Softwarized Networks in the Age of Distributed Intelligence, NetSoft 2026 - Proceedings

Conference

Conference12th IEEE International Conference on Network Softwarization, NetSoft 2026
Country/TerritoryGermany
CityBerlin
Period29/06/263/07/26

Keywords

  • dynamic workloads
  • IRR
  • Kubernetes
  • performance
  • power consumption
  • resource management
  • VPA

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