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README.md
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# MMRA
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This is the repo for the paper: '[MMRA: A Benchmark for Multi-granularity Multi-image Relational Association](https://arxiv.org/pdf/2407.17379)'.
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Our benchmark dataset is released: [Huggingface Dataset: m-a-p/MMRA](https://huggingface.co/datasets/m-a-p/MMRA), [Google Drive](https://drive.google.com/file/d/1XhyCfCM6McC_umSEQJ4NvCZGMUnMdzj2/view?usp=sharing), and [Baidu Netdisk](https://pan.baidu.com/s/1deQOSzpX_-Y6-IjlSiN1OA?pwd=zb3s).
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The MMRA.zip in Google Drive and Baidu Netdisk contains a metadata.json file, which includes all the sample information. We can input the relevant questions, options, and image pairs to LVMLs through it.
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---
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# Introduction
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We define a multi-image relation association task, and meticulously curate **MMRA** benchmark, a **M**ulti-granularity **M**ulti-image **R**elational **A**ssociation benchmark, consisted of **1,024** samples.
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In order to systematically and comprehensively evaluate mainstream LVLMs, we establish an associational relation system among images that contain **11 subtasks** (e.g, UsageSimilarity, SubEvent, etc.) at two granularity levels (i.e., "**image**" and "**entity**") according to the relations in ConceptNet.
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Our experiments reveal that on the MMRA benchmark, current multi-image LVLMs exhibit distinct advantages and disadvantages across various subtasks. Notably, fine-grained, entity-level multi-image perception tasks pose a greater challenge for LVLMs compared to image-level tasks. Tasks that involve spatial perception are especially difficult for LVLMs to handle.
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Additionally, our findings indicate that while LVLMs demonstrate a strong capability to perceive image details, enhancing their ability to associate information across multiple images hinges on improving the reasoning capabilities of their language model component.
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Moreover, we explored the ability of LVLMs to perceive image sequences within the context of our multi-image association task. Our experiments indicate that the majority of current LVLMs do not adequately model image sequences during the pre-training process.
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<div align="center">
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<img src=./imgs/framework.png width=80% />
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</div>
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<div align="center">
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<img src=./imgs/main_result.png width=80% />
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</div>
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---
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# Evaluateion Codes
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The codes of this paper can be found in our [GitHub](https://github.com/Wusiwei0410/MMRA/tree/main)
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---
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# Using Datasets
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You can load our datasets by following codes:
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```python
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MMRA_data = datasets.load_dataset('m-a-p/MMRA')['train']
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print(MMRA_data[0])
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```
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---
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# Citation
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BibTeX:
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```
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@inproceedings{Wu2024MMRAAB,
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title={MMRA: A Benchmark for Multi-granularity Multi-image Relational Association},
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author={Siwei Wu and Kang Zhu and Yu Bai and Yiming Liang and Yizhi Li and Haoning Wu and Jiaheng Liu and Ruibo Liu and Xingwei Qu and Xuxin Cheng and Ge Zhang and Wenhao Huang and Chenghua Lin},
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year={2024},
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url={https://api.semanticscholar.org/CorpusID:271404179}
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}
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```
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imgs/framework.png
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Git LFS Details
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imgs/main_result.png
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Git LFS Details
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