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PEACE: Empowering Geologic Map Holistic Understanding with MLLMs

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arxiv 2501.06184 v1 pith:OQV5FQNW submitted 2025-01-10 cs.CV cs.AIcs.CEcs.HCcs.MA

classification cs.CVcs.AIcs.CEcs.HCcs.MA
keywords geologicunderstandingmllmsempoweringgeologygeomap-agentgeomap-benchholistic
verification ladder T0 review T1 audit T2 compute T3 formal
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Geologic map, as a fundamental diagram in geology science, provides critical insights into the structure and composition of Earth's subsurface and surface. These maps are indispensable in various fields, including disaster detection, resource exploration, and civil engineering. Despite their significance, current Multimodal Large Language Models (MLLMs) often fall short in geologic map understanding. This gap is primarily due to the challenging nature of cartographic generalization, which involves handling high-resolution map, managing multiple associated components, and requiring domain-specific knowledge. To quantify this gap, we construct GeoMap-Bench, the first-ever benchmark for evaluating MLLMs in geologic map understanding, which assesses the full-scale abilities in extracting, referring, grounding, reasoning, and analyzing. To bridge this gap, we introduce GeoMap-Agent, the inaugural agent designed for geologic map understanding, which features three modules: Hierarchical Information Extraction (HIE), Domain Knowledge Injection (DKI), and Prompt-enhanced Question Answering (PEQA). Inspired by the interdisciplinary collaboration among human scientists, an AI expert group acts as consultants, utilizing a diverse tool pool to comprehensively analyze questions. Through comprehensive experiments, GeoMap-Agent achieves an overall score of 0.811 on GeoMap-Bench, significantly outperforming 0.369 of GPT-4o. Our work, emPowering gEologic mAp holistiC undErstanding (PEACE) with MLLMs, paves the way for advanced AI applications in geology, enhancing the efficiency and accuracy of geological investigations.

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    AgentRec routes a natural-language prompt to the right LLM agent by embedding the prompt and comparing it with per-agent prompt embeddings, reaching 92.2% top-1 accuracy on a synthetic test set.

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