Jul 24, 2026
Four posters accepted at ACM SOSP 2026
Four posters have been accepted for presentation at the 32nd ACM Symposium on Operating Systems Principles (SOSP). We will present work in four fields: power-aware clock configuration, placement and scheduling in large-scale clouds, LLM workloads, and virtualization on constrained devices. SOSP is the world's premier forum for researchers, developers, programmers, and teachers of computer systems technology. Academic and industrial participants present research and experience papers that cover the full range of theory and practice of computer systems software. Congrats to all students!
- Michel Rottleuthner, Thomas C. Schmidt, Matthias Wählisch: "Towards Power-aware Clock Configuration for Embedded Operating Systems"
- Arno Uhlig, Iris Braun, Matthias Wählisch: "Cortex: Towards Unified, Multi-Domain Placement and Scheduling in Large-scale Clouds"
- Valentin Küchler, Arno Uhlig, Iris Braun, Matthias Wählisch: "GPU-Aware Scheduling for LLM Workloads: First Insights Across Kubernetes Schedulers"
- Leonard Herbst, Georg Detlef Bär-Dumont, Thomas Spinger, Matthias Wählisch: "Towards an Empirical Comparison of Virtualization on Constrained IoT Devices"
SOSP takes a broad view of systems and solicits contributions from many fields of systems practice, including: operating systems, file and storage systems, distributed systems, cloud computing, mobile and edge systems, secure and reliable systems, systems aspects of big data and machine learning, embedded and real-time systems, virtualization, networking as it relates to operating systems, and management and troubleshooting of complex systems. We also welcome work that explores the interaction of computer systems with related areas such as computer architecture, networking, programming languages, analytics, verification, and databases. In keeping with SOSP tradition, we will favor work that explores new territory, continues a significant research dialogue, or reflects on experience with or measurements of state-of-the-art implementations.