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Parameter-free Dynamic Regret: Time-varying Movement Cost...
[Submitted on 6 Feb 2026 (v1), last revised 6 Aug 2026 (this ver · 2026-02-07 · via stat.ML updates on arXiv.org

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Abstract:In this paper, we study dynamic regret in unconstrained online convex optimization (OCO) with movement costs. Specifically, we generalize the standard setting by allowing the movement cost coefficients $\lambda_t$ to vary arbitrarily over time. Our main contribution is a novel algorithm that establishes the first comparator-adaptive dynamic regret bound for this setting, guaranteeing $\widetilde{\mathcal{O}}(\sqrt{(M^2+MP_T)(T+\sum_t \lambda_t)})$ regret, where $P_T$ is the path length of the comparator sequence over $T$ rounds and $M$ is the maximal comparator norm. Our result recovers the optimal adaptive rates for both static and dynamic regret in OCO as the special case where $\lambda_t=0$ for all rounds. To demonstrate the versatility of our results, we consider two applications: OCO with delayed feedback and OCO with time-varying memory. We show that both problems can be translated into time-varying movement costs, establishing a novel reduction specifically for the delayed feedback setting that is of independent interest. A crucial observation is that the first-order dependence on movement costs in our regret bound plays a key role in enabling optimal comparator-adaptive dynamic regret guarantees in both settings.

Submission history

From: Andrew Jacobsen [view email]
[v1] Fri, 6 Feb 2026 17:50:22 UTC (38 KB)
[v2] Fri, 29 May 2026 11:20:07 UTC (55 KB)
[v3] Thu, 6 Aug 2026 18:03:54 UTC (55 KB)