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Toward Real-Time SLAs: Bounding p50/p99 Latency Under SNR Regimes

Operational RF systems require quantifiable latency guarantees. We derive SLA envelopes—p50/p99 latency
bounds—as functions of operating conditions (e.g., SNR, ∆f,
Q), estimated via active sampling over a drift-free parallel
scheduler. Building on agentic boundary discovery [?], cost-aware
ghost analysis [?], and throughput scaling without drift [?],
we (i) produce percentile latency bands, (ii) render SLA pass/-
fail heatmaps, and (iii) characterize time-to-alert distributions
(event→encode→publish→render). These artifacts map directly
to deployable SLA contracts.

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