ISSN 1000-3665 CN 11-2202/P

    基于国产大语言模型与平台的矿区生态恢复效果评估方法研究

    Methodology for ecological restoration assessment of mining area based on domestic large language models and platforms

    • 摘要: 传统矿区生态恢复评估方法在评估精度、效率及便利度等方面仍存在不足,在成果自主可控方面也有待进一步加强。快速发展的大语言模型为生态评估的智能化提供了全新路径。基于多国产大语言模型与华为昇腾平台,提出了一种矿区生态恢复智能化评估方法。以贵州省典型矿区遥感数据集为研究对象,通过提示词工程与检索增强生成技术指导模型对不同时段的图像进行生态恢复分析;基于集成学习确定最优模型并生成最优评估结果。结果表明,国产大模型在矿区生态恢复效果评估中展现了良好的性能;整合多个大模型优势可以有效降低单一模型偏差,能够客观评估矿区不同时期生态环境恢复情况并自动生成评估报告;方法在准确率、自动化水平与评估一致性方面表现优异,能够有效减少人工干预、提升评估效率。研究成果展示了大语言模型在矿区生态恢复评估场景中的应用潜力,为构建国产化自主可控的评估系统提供了可行路径,具有良好的应用前景。

       

      Abstract: Traditional ecological restoration assessment methods for mining areas still face limitations in terms of accuracy, efficiency, and technological autonomy. The rapid development of large language models (LLMs) has opened new opportunities for intelligent ecological restoration assessment. Based on multiple domestic LLMs and Huawei’s Ascend platform, this study proposed an intelligent assessment method for ecological restoration in mining areas. Using remote sensing datasets from typical mining areas in Guizhou Province, prompt engineering and retrieval-augmented generation techniques were employed to guide the models in analyzing ecological restoration conditions from multi-temporal imagery. The optimal model is determined via ensemble learning to generate assessment results. Results demonstrate that domestic LLMs present strong performance in evaluating ecological restoration effects in mining areas. By integrating the strengths of different models, the method effectively reduces the bias risk of single models, and objectively assesses the ecological restoration status of mining areas over time while automatically generating evaluation reports. The method excels in accuracy, automation, and assessment consistency, significantly reducing manual intervention and improving evaluation efficiency. This research highlights the application potential of LLMs in intelligent ecological restoration assessment for mining areas and provides a feasible pathway for building an independent, domestically controlled evaluation system, demonstrating promising practical application prospects.

       

    /

    返回文章
    返回