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Risk-Averse Decision Making with Multi-Level Reliability Guarantees

Amirmohammad Farzaneh, Osvaldo Simeone

Latestcs.CLcs.LGcs.AIcs.CV
arXiv ID
2609.11524 v1
Submitted
2026-09-10

Abstract

Many applications in engineering, including wireless broadcasting, require designs that provide performance certificates at different target outage levels. This paper studies the problem of maximizing the weighted average of such certificates in the presence of uncertainty about the true system state. The problem is shown to be equivalent to an optimization over nested prediction sets, connecting to the literature on conformal prediction and extending prior art on single-level risk-averse decision making. Furthermore, we derive a dual formulation that decouples optimization across input values. Numerical experiments on a diversity-based wireless transmission system illustrate the cost of enforcing multi-level certificates with a single shared policy and trace the Pareto trade-off between multiple reliability levels.

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