cs.LGMay 11, 2026

RelFlexformer: Efficient Attention 3D-Transformers for Integrable Relative Positional Encodings

Authors: Byeongchan KimArijit SehanobishAvinava DubeyMin-hwan OhKrzysztof Choromanski

Organizations: 1Seoul National University · 2Independent · 3Google Research · 4Google DeepMind · 5Columbia University

Abstract

We present a new class of efficient attention mechanisms applying universal 3D Relative Positional Encoding (RPE) methods given by arbitrary integrable modulation functions ff. They lead to the new class of 3D-Transformer models, called \textit{RelFlexformers}, flexibly integrating those RPEs, and characterized by the O(LlogL)O(L \log L) time complexity of the attention computation for the LL-length input sequences. RelFlexformers builds on the theory of the Non-Uniform Fourier Transform (NU-FFT), naturally generalizing several existing efficient RPE-attention methods from structured settings with tokens homogeneously embedded in unweighted grids into general non-structured heterogeneous scenarios, where tokens' positions are arbitrarily distributed in the corresponding 3D spaces. As such, RelFlexformers can be applied in particular to model point clouds. Our extensive empirical evaluation on a large portfolio of 3D datasets confirms quality improvements provided by the NU-FFT-driven attention modulation techniques in the RelFlexformers.

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