EMNLP 2024finding1 citations

Exploring the Potential of Multimodal LLM with Knowledge-Intensive Multimodal ASR

Minghan Wang, Yuxia Wang, Thuy-Trang Vu, Ehsan Shareghi, Reza Haf

Abstract

Recent advancements in multimodal large language models (MLLMs) have made significant progress in integrating information across various modalities, yet real-world applications in educational and scientific domains remain challenging. This paper introduces the Multimodal Scientific ASR (MS-ASR) task, which focuses on transcribing scientific conference videos by leveraging visual information from slides to enhance the accuracy of technical terminologies. Realized that traditional metrics like WER fall short in assessing performance accurately, prompting the proposal of severity-aware WER (SWER) that considers the content type and severity of ASR errors. We propose the Scientific Vision Augmented ASR (SciVASR) framework as a baseline method, enabling MLLMs to improve transcript quality through post-editing. Evaluations of state-of-the-art MLLMs, including GPT-4o, show a 45% improvement over speech-only baselines, highlighting the importance of multimodal information integration.

BibTeX
@inproceedings{wang-etal-2024-exploring,
    title = "Exploring the Potential of Multimodal {LLM} with Knowledge-Intensive Multimodal {ASR}",
    author = "Wang, Minghan  and
      Wang, Yuxia  and
      Vu, Thuy-Trang  and
      Shareghi, Ehsan  and
      Haf, Reza",
    editor = "Al-Onaizan, Yaser  and
      Bansal, Mohit  and
      Chen, Yun-Nung",
    booktitle = "Findings of the Association for Computational Linguistics: EMNLP 2024",
    month = nov,
    year = "2024",
    address = "Miami, Florida, USA",
    publisher = "Association for Computational Linguistics",
    url = "https://aclanthology.org/2024.findings-emnlp.776/",
    doi = "10.18653/v1/2024.findings-emnlp.776",
    pages = "13274--13288"
}
Exploring the Potential of Multimodal LLM with Knowledge-Intensive Multimodal ASR · EMNLP 2024