安徽农学通报 >
2026 , Vol. 32 >Issue 7: 52 - 54
DOI: https://doi.org/10.16377/j.cnki.issn1007-7731.2026.07.013
林业调查规划设计研究进展与实践应用
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冯小刚(1998—),男,四川广安人,硕士,从事林业调查规划工作。 |
Copy editor: 张琴
收稿日期: 2025-05-14
网络出版日期: 2026-04-14
Research progress and practical application of forestry inventory, planning and design
Received date: 2025-05-14
Online published: 2026-04-14
林业调查规划设计是统筹森林资源保护与经济发展的重要基础,涵盖资源调查、生态评价、规划设计及动态监测四大板块。本文系统梳理林业调查规划设计的研究现状,重点分析其技术体系创新、实践应用成效及现存提升空间。在技术体系方面,已形成“数据采集—处理分析—规划设计”的完整链条,数据采集实现卫星遥感、无人机低空探测与地面智能设备的协同应用,数据处理依托GIS空间分析、大数据及机器学习技术提升效率,规划设计采用生态系统模型与多目标决策分析方法优化方案;在实践应用中,该技术已广泛服务于森林资源清查监测、生态修复、灾害应对及产业布局优化等领域,有效支撑森林资源可持续利用。当前,林业调查规划设计在技术融合深度、管理机制完善、人才资源配置等方面仍有提升空间。基于此,本文从构建智能化调查规划体系、强化全流程监管、优化人才资源配置三个维度提出优化策略,旨在完善林业调查规划设计体系,提升其科学性与实效性。本文为林业高质量发展提供参考。
冯小刚 , 吴贾 , 余艳 . 林业调查规划设计研究进展与实践应用[J]. 安徽农学通报, 2026 , 32(7) : 52 -54 . DOI: 10.16377/j.cnki.issn1007-7731.2026.07.013
Forestry inventory, planning and design served as an important foundation for coordinating forest resource conservation and economic development, covering 4 major modules: resource investigation, ecological assessment, planning and design, and dynamic monitoring. This paper systematically reviewed the research status of forestry inventory, planning and design, and focused on analyzing its technological system innovation, practical application effects, and existing room for improvement. In terms of the technological system, a complete chain of “data acquisition–processing and analysis–planning and design” had been formed. Data acquisition realized the coordinated application of satellite remote sensing, UAV low-altitude detection, and ground intelligent equipment. Data processing improved efficiency relying on GIS spatial analysis, big data, and machine learning technologies. Planning and design optimized schemes by adopting ecosystem models and multi-objective decision analysis methods. In practical applications, these technologies had been widely used in fields such as forest resource inventory and monitoring, ecological restoration, disaster response, and industrial layout optimization, which effectively supported the sustainable utilization of forest resources. At that time, forestry inventory, planning and design still had room for improvement in the depth of technological integration, the improvement of management mechanisms, and the allocation of human resources. On this basis, this paper put forward optimization strategies from three dimensions: constructing an intelligent investigation and planning system, strengthening the whole-process supervision, and optimizing the allocation of human resources, aiming to improve the system of forestry inventory, planning and design and enhance its scientificity and effectiveness. This paper provides references for the high quality development of forestry.
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