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MOSAIC: PMU-Guided Overload Isolation for Mission-Critical Edge Systems
ID:43 View protection:Participant Only Updated time:2026-07-22 16:09:21 Views:17 Online

Start Time:2026-07-31 11:40

Duration:15min

Session:[S6] Artificial Intelligence Use Cases [S6-3] Artificial Intelligence Use Cases

Abstract

Deadline-aware scheduling mechanisms become in-effective under severe hardware interference during overload conditions. In edge environments where AI inference and coordi-nation workloads are co-located on the same node, contention in the shared Last-Level Cache (LLC) substantially increases effec-tive service times irrespective of the underlying scheduling policy, resulting in uncontrolled queue buildup and catastrophic tail-latency degradation that cannot be mitigated through priority-based ordering alone.

We introduce MOSAIC, a PMU-guided overload isolation framework designed for mission-critical edge computing sys-tems. MOSAIC leverages hardware Performance Monitoring Unit (PMU) counters to quantify pairwise LLC interference across workload classes and incorporates these measurements into a proactive admission-control mechanism. In addition, a predictive deadline-feasibility metric guides scheduling decisions while enforcing bounded starvation guarantees. Collectively, these mechanisms shield mission-critical workloads from harmful co-location effects during catastrophic burst conditions.

Experimental results demonstrate that MOSAIC reduces P99 tail latency by 26.4% compared with the strongest priority-aware baseline, while simultaneously achieving 100% completion for mission-critical task classes under crisis-level workloads. The framework incurs minimal runtime overhead, with PMU sampling requiring only 1.4 µs per read and admission-control decisions completing within 280 µs. Furthermore, the system is fully reproducible and publicly released as open-source software.

Keywords
edge computing,interference-aware scheduling,LLC contention,PMU counters,overload isolation,admission control,disaster response,Real-Time Systems.,cgroups
Speaker
Ankita Maji
Lovely Professional University

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Important Dates
  • Conference date

    07-30

    2026

    -

    08-01

    2026

  • 07-28 2026

    Draft paper submission deadline

  • 07-28 2026

    Registration deadline

Sponsored By

The United Societies of Science

Organized By

Kongunadu College of Engineering and Technology

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