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Lagrangian Perturbation Diffusion Steering: Latent Reinfo...
[Submitted on 31 May 2026 (v1), last revised 8 Aug 2026 (this ve · 2026-06-02 · via cs updates on arXiv.org

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Abstract:Behavior cloning with high-capacity generative policies achieves strong imitation performance, but is often limited by demonstration coverage and distribution shift. Direct reinforcement learning fine-tuning can improve performance, but updating large action decoders is frequently unstable and sample inefficient. We propose Lagrangian Perturbation Diffusion Steering (LP-DS), a lightweight adaptation method that improves a frozen generative policy by learning a compact noise-space perturbation before decoding. LP-DS optimizes this perturbation with a Lagrangian trust-region objective, improving downstream value while constraining deviation from the latent prior. Across RoboMimic manipulation, OpenAI Gym locomotion, and Adroit dexterous manipulation benchmarks, LP-DS improves sample efficiency, success, and return while maintaining higher action-space entropy than unconstrained noise-space steering, with return improvements of up to 25% over prior baselines. Additional evaluations with flow-matching backbones, a large vision-language-action model, and physical Franka deployment show that LP-DS is not limited to compact diffusion policies or simulated benchmarks. Project page: this https URL.

Submission history

From: Hikmet Simsir [view email]
[v1] Sun, 31 May 2026 10:40:28 UTC (14,956 KB)
[v2] Sat, 8 Aug 2026 10:30:40 UTC (14,956 KB)