Papers by Shuo Ma

11 papers
KESA: A Knowledge Enhanced Approach To Sentiment Analysis (2022.aacl-main)

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Challenge: Recent work on injecting sentiment knowledge into pre-trained language models, but it is difficult to integrate external knowledge into PLMs.
Approach: They propose two sentiment-aware auxiliary tasks to integrate sentiment knowledge into the objective of the downstream task.
Outcome: The proposed tasks outperform baselines and complement existing sentiment-enhanced models.
A Retrieve-and-Rewrite Initialization Method for Unsupervised Machine Translation (2020.acl-main)

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Challenge: Recent work shows successful methods for unsupervised machine translation (UMT) initialization stage is important since bad initialization may wrongly squeeze the search space and too much noise may hurt the final performance.
Approach: They propose a retrieval and rewriting based method to better initialize unsupervised translation models.
Outcome: The proposed method improves translation performance by over 4 BLEU scores.
Parameter-Efficient Routed Fine-Tuning: Mixture-of-Experts Demands Mixture of Adaptation Modules (2026.findings-eacl)

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Challenge: Existing Parameter-Efficient Fine-Tuning (PEFT) strategies that focus on specialized experts are not effective for Mixture-of-Experts (MoE).
Approach: They propose to integrate a dynamic routing mechanism among specialized experts in Mixture-of-Experts (MoE) .
Outcome: Extensive experiments on commonsense and math reasoning tasks validate the performance and efficiency of the proposed routed approach.
Meta-Reinforced Multi-Domain State Generator for Dialogue Systems (2020.acl-main)

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Challenge: Existing methods to train a multi-domain dialogue state tracker are lacking in accuracy.
Approach: They propose a Meta-Reinforced Multi-Domain State Generator to train a DST meta-learning model with a few domains as source domains and a new domain as target domain.
Outcome: The proposed system outperforms the traditional training approach with extremely little training data in target domain.
Explicit Cross-lingual Pre-training for Unsupervised Machine Translation (D19-1)

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Challenge: Existing approaches to build initial unsupervised machine translation models with cross-lingual n-gram embeddings are inexplicit and limited.
Approach: They propose a cross-lingual pre-training method that incorporates cross-linguistic training signals into pre-trained models by randomly choosing source n-grams in the input text stream.
Outcome: The proposed method significantly improves the performance of unsupervised machine translation.
Towards Low-Resource Semi-Supervised Dialogue Generation with Meta-Learning (2020.findings-emnlp)

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Challenge: Existing systems that use labelled data to generate dialogues are lacking in high accuracy.
Approach: They propose a meta-learning based semi-supervised explicit dialogue state tracker for neural dialogue generation, denoted as MEDST.
Outcome: The proposed system outperforms existing systems by 18.7% goal accuracy and 14.3% entity match rate on the KVRET corpus with 2% labelled data in semi-supervision.
A Graph-based Coarse-to-fine Method for Unsupervised Bilingual Lexicon Induction (2020.acl-main)

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Challenge: Recent methods for bilingual lexicon induction are based on unsupervised cross-lingual word embeddings . previous methods only use word-level information, which is limited and inaccurate .
Approach: They propose a graph-based approach to induce bilingual lexicons in a coarse-to-fine way . they use word cliques from graphs and aligned clique-level words to find initial translation solution .
Outcome: The proposed method improves the performance of bilingual lexicon induction compared with previous methods.
EVOTOOL: Self-Evolving Tool-Use Policy Optimization in LLM Agents via Blame-Aware Mutation and Diversity-Aware Selection (2026.acl-long)

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Challenge: Existing approaches to optimize tool-use policies are monolithic and prone to entangling behaviors.
Approach: They propose a framework that decomposes agent’stool-use policy into four modules and improves them via three mechanisms.
Outcome: The proposed framework outperforms strong baselines on bothGPT-4.1 and Qwen3-8B while maintaining superior efficiency and transferability.
SemFace: Pre-training Encoder and Decoder with a Semantic Interface for Neural Machine Translation (2021.acl-long)

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Challenge: Using pre-training methods for NMT models is difficult because of the cross-attention module . cross-linguistic embeddings are not used to pretrain a decoder .
Approach: They propose a semantic interface between pre-trained encoder and pre-train decoder to improve NMT performance.
Outcome: The proposed method improves on translation and unsupervised translation tasks.
Triangular Architecture for Rare Language Translation (P18-1)

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Challenge: Empirical results show that Neural Machine Translation (NMT) performs poor on low-resource pairs especially when Z is a rare language.
Approach: They propose a triangular triangulation technique to leverage bilingual data to optimize the translation performance of low-resource pairs.
Outcome: Empirical results show that the proposed architecture significantly improves translation quality of rare languages on MultiUN and IWSLT2012 datasets and even better when combining back-translation methods.
METok: Multi-Stage Event-based Token Compression for Efficient Long Video Understanding (2025.emnlp-main)

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Challenge: Recent advances in Video Large Language Models (VLLMs) have significantly enhanced their ability to understand video content.
Approach: They propose a training-free, Multi-stage Event-based Token compression framework that eliminates redundant visual tokens across three critical stages .
Outcome: The proposed framework reduces FLOPs and KV Cache memory consumption while maintaining comparable or even superior accuracy.

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