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Paper · arXiv 2501.19339

PixelWorld: Towards Perceiving Everything as Pixels

Zhiheng Lyu, Xueguang Ma, Wenhu Chen

15 upvotesJanuary 31, 2025arXiv 预印本
AI 摘要

A unified perception framework treating all modalities as pixel inputs (PEAP) outperforms token-based input in some tasks but degrades reasoning and coding capabilities, requiring enhancements in foundational models’ perceptual abilities.

PixelWorldmultimodal datasetstoken-based inputperceptual abilitiesattention patternspatial sparsity

Abstract

Existing foundation models typically process visual input as pixels and textual input as tokens, a paradigm that contrasts with human perception, where both modalities are processed in a unified manner. With the rise of embodied and agentic AI, where inputs primarily come from camera pixels, the need for a unified perception framework becomes increasingly evident. In this paper, we propose to unify all modalities (text, tables, code, diagrams, images, etc) as pixel inputs, i.e. "Perceive Everything as Pixels" (PEAP). We introduce PixelWorld, a novel evaluation suite that unifies all the mentioned modalities into pixel space to gauge the existing models' performance. Our findings show that (1) PEAP outperforms baseline with token-based input in multimodal datasets, benefiting from unified input for better disambiguation, (2) significant declines in reasoning and coding capabilities across all models when processing pixel-based input, underscoring the need to enhance foundation models' perceptual abilities, (3) larger models can maintain strong performance on non-reasoning tasks under PEAP, while smaller models like Phi-3.5-V suffer significant performance degradation, (4) the attention pattern of PEAP is highly aligned with text token input, (5) PEAP can be accelerated significantly by exploiting the spatial sparsity. We conclude that the existing frontier models are competent in pixel perception, however, there is still headroom for improvement. Our code, dataset will be released upon acceptance.

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