Papers with plug-and-play mechanism
Trankit: A Light-Weight Transformer-based Toolkit for Multilingual Natural Language Processing (2021.eacl-demos)
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| Challenge: | Trankit is a lightweight, pre-trained toolkit for multilingual natural language processing. |
| Approach: | They propose a transformer-based toolkit for multilingual natural language processing that trains pipelines over 100 languages and 90 pretrained pipelines for 56 languages. |
| Outcome: | The proposed tool outperforms existing pipelines over sentence segmentation, part-of-speech tagging, morphological feature tabbing, and dependency parsing while maintaining competitive performance over tokenization, multi-word token expansion, and lemmatization over 90 Universal Dependencies treebanks. |
SMR: State Memory Replay for Long Sequence Modeling (2024.findings-acl)
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| Challenge: | Existing state space models (SSMs) address non-uniform sampling, but their recursive structures impede efficient SSM computation via convolution. |
| Approach: | They propose a plug-and-play mechanism to solve the Non-Stable State problem by adjusting input sequences with early memories. |
| Outcome: | The proposed method overcomes the non-uniform sample processing problem . it can achieve Sampling Step Adaptation (SSA) by adjusting input sequences with early memories. |
CLaSp: In-Context Layer Skip for Self-Speculative Decoding (2025.acl-long)
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Longze Chen, Renke Shan, Huiming Wang, Lu Wang, Ziqiang Liu, Run Luo, Jiawei Wang, Hamid Alinejad-Rokny, Min Yang
| Challenge: | Existing methods for drafting Large Language Models require additional modules to be trained, which can be challenging to implement and ensure compatibility across various LLMs. |
| Approach: | They propose an in-context layer-skipping strategy for self-speculative decoding that uses a plug-and-play mechanism to skip intermediate layers of the verify model to construct a compressed draft model. |
| Outcome: | The proposed method achieves a speedup of 1.3 1.7 on LLaMA3 series models without altering the original distribution of the generated text. |