Papers by Shicheng Li

7 papers
ATLANTIS: Weak-to-Strong Learning via Importance Sampling (2025.acl-long)

Copied to clipboard

Challenge: ATLANTIS is a new technique to improve the performance of large language models.
Approach: They propose a new technique to bridge the gap between the distribution of current datasets and the real-world data distribution by using importance sampling.
Outcome: The proposed technique can bring consistent and significant improvements to models’ performance and can be flexibly transferred among models with different structures.
PunchBench: Benchmarking MLLMs in Multimodal Punchline Comprehension (2025.acl-long)

Copied to clipboard

Challenge: Existing benchmarks on punchline comprehension suffer from language shortcuts that allow models to rely on text, lack of question diversity, and narrow focus on a specific domain of multimodal content.
Approach: They propose a multimodal punchline comprehension benchmark to assess models' ability to comprehend punchlines.
Outcome: The proposed model surpasses in-context learning and chain-of-thought in punchline comprehension.
Multi-Granularity Contrasting for Cross-Lingual Pre-Training (2021.findings-acl)

Copied to clipboard

Challenge: Existing approaches to pre-training focus on embedding alignment, but they neglect the modeling of bidirectional contexts.
Approach: They propose a framework to learn languageuniversal representations using multi-granularity contrasting framework . they encode semantic equivalents from different languages into similar representations .
Outcome: The proposed framework can achieve significant performance gains in machine translation and cross-lingual language understanding.
TempCompass: Do Video LLMs Really Understand Videos? (2024.findings-acl)

Copied to clipboard

Challenge: Existing benchmarks on video large language models lack a comprehensive feedback on temporal perception ability . current models cannot distinguish between different temporal aspects and are limited in task formats .
Approach: They propose a benchmark to evaluate temporal perception ability of video large language models . they construct conflicting videos that share the same static content but differ in a specific temporal aspect .
Outcome: The proposed benchmarks show that video large language models exhibit poor temporal perception ability.
Rethinking Denoised Auto-Encoding in Language Pre-Training (2021.emnlp-main)

Copied to clipboard

Challenge: Pre-trained models such as BERT have achieved success in learning sequence representations, but they tend to learn representations that are covariant with the noise of pre-training.
Approach: They propose to train self-trained models to learn noise invariant sequence representations . they encourage consistency between original sequence and corrupted version via unsupervised instance-wise training signals.
Outcome: The proposed model improves on 11 natural language understanding and cross-modal tasks and achieves 0.6% gain on GLUE benchmarks and 0.8% increment on NLVR2 .
TESTA: Temporal-Spatial Token Aggregation for Long-form Video-Language Understanding (2023.findings-emnlp)

Copied to clipboard

Challenge: Experimental results show that TESTA reduces the number of visual tokens by 75% and thus accelerates video encoding.
Approach: They propose a method to condense video semantics by aggregating similar frames and patches within each frame.
Outcome: The proposed method reduces visual tokens by 75% and accelerates video encoding.
Plot Retrieval as an Assessment of Abstract Semantic Association (2024.acl-srw)

Copied to clipboard

Challenge: Existing information retrieval datasets cannot capture abstract semantic associations well.
Approach: They propose a task that retrieves relevant plots from the book for a query using a labeled dataset.
Outcome: The proposed task can be used to evaluate the performance of IR models on the novel task Plot Retrieval.

What is GenGO?

GenGO is an NLP powered publication search system. It currenctly indexes 30k+ papers from ACL Anthology, and implements multi-aspect summarization, semantic search, and more!

Information

About
Limitations