LSG uses an LLM's own distribution difference from a wait-1 baseline to decide read/write timing, and reports strong results on simultaneous translation and streaming ASR.
Agent-SiMT: Agent-assisted Simultaneous Machine Translation with Large Language Models
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abstract
Simultaneous Machine Translation (SiMT) generates target translations while reading the source sentence. It relies on a policy to determine the optimal timing for reading sentences and generating translations. Existing SiMT methods generally adopt the traditional Transformer architecture, which concurrently determines the policy and generates translations. While they excel at determining policies, their translation performance is suboptimal. Conversely, Large Language Models (LLMs), trained on extensive corpora, possess superior generation capabilities, but it is difficult for them to acquire translation policy through the training methods of SiMT. Therefore, we introduce Agent-SiMT, a framework combining the strengths of LLMs and traditional SiMT methods. Agent-SiMT contains the policy-decision agent and the translation agent. The policy-decision agent is managed by a SiMT model, which determines the translation policy using partial source sentence and translation. The translation agent, leveraging an LLM, generates translation based on the partial source sentence. The two agents collaborate to accomplish SiMT. Experiments demonstrate that Agent-SiMT attains state-of-the-art performance.
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Large Language Models Are Read/Write Policy-Makers for Simultaneous Generation
LSG uses an LLM's own distribution difference from a wait-1 baseline to decide read/write timing, and reports strong results on simultaneous translation and streaming ASR.