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Towards Hierarchical Multi-Agent Workflows for Zero-Shot Prompt Optimization

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arxiv 2405.20252 v2 pith:DAUOF4ON submitted 2024-05-30 cs.CL

Towards Hierarchical Multi-Agent Workflows for Zero-Shot Prompt Optimization

classification cs.CL
keywords promptllmsdesignhierarchicalanswerdependshmawhuman
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Large language models (LLMs) have shown great progress in responding to user questions, allowing for a multitude of diverse applications. Yet, the quality of LLM outputs heavily depends on the prompt design, where a good prompt might enable the LLM to answer a very challenging question correctly. Therefore, recent works have developed many strategies for improving the prompt, including both manual crafting and in-domain optimization. However, their efficacy in unrestricted scenarios remains questionable, as the former depends on human design for specific questions and the latter usually generalizes poorly to unseen scenarios. To address these problems, we give LLMs the freedom to design the best prompts according to themselves. Specifically, we include a hierarchy of LLMs, first constructing a prompt with precise instructions and accurate wording in a hierarchical manner, and then using this prompt to generate the final answer to the user query. We term this pipeline Hierarchical Multi-Agent Workflow, or HMAW. In contrast with prior works, HMAW imposes no human restriction and requires no training, and is completely task-agnostic while capable of adjusting to the nuances of the underlying task. Through both quantitative and qualitative experiments across multiple benchmarks, we verify that despite its simplicity, the proposed approach can create detailed and suitable prompts, further boosting the performance of current LLMs.

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Cited by 1 Pith paper

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  1. Thought Graph Traversal for Test-time Scaling in Chest X-ray VLLMs

    cs.CV 2025-06 unverdicted novelty 5.0

    A new prompting framework called Thought Graph Traversal combined with reasoning budget forcing improves test-time performance of frozen chest X-ray VLLMs on report generation benchmarks.