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Imp: Highly Capable Large Multimodal Models for Mobile Devices

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arxiv 2405.12107 v2 pith:MEO32AUE submitted 2024-05-20 cs.CV cs.CL

classification cs.CVcs.CL
keywords lmmsmodellargelightweightmodelsmultimodalaspectsbeen
verification ladder T0 review T1 audit T2 compute T3 formal
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By harnessing the capabilities of large language models (LLMs), recent large multimodal models (LMMs) have shown remarkable versatility in open-world multimodal understanding. Nevertheless, they are usually parameter-heavy and computation-intensive, thus hindering their applicability in resource-constrained scenarios. To this end, several lightweight LMMs have been proposed successively to maximize the capabilities under constrained scale (e.g., 3B). Despite the encouraging results achieved by these methods, most of them only focus on one or two aspects of the design space, and the key design choices that influence model capability have not yet been thoroughly investigated. In this paper, we conduct a systematic study for lightweight LMMs from the aspects of model architecture, training strategy, and training data. Based on our findings, we obtain Imp -- a family of highly capable LMMs at the 2B-4B scales. Notably, our Imp-3B model steadily outperforms all the existing lightweight LMMs of similar size, and even surpasses the state-of-the-art LMMs at the 13B scale. With low-bit quantization and resolution reduction techniques, our Imp model can be deployed on a Qualcomm Snapdragon 8Gen3 mobile chip with a high inference speed of about 13 tokens/s.

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  1. Efficient Deployment of Vision-Language Models on Mobile Devices: A Case Study on OnePlus 13R

    cs.LG 2025-07 conditional novelty 5.0 of 10

    A side-by-side mobile benchmark shows VLM runtimes on a OnePlus 13R leave accelerators idle, push CPUs to thermal limits, and achieve order-of-magnitude power savings only when the GPU handles image and language kernels.

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