综述1200篇论文,系统梳理湿地遥感分类方法与挑战
A comprehensive review of remote sensing in wetland classification and mapping
- 基于1200篇论文做元分析,归纳主流数据、方法与研究区域
- 揭示湿地变化的多尺度驱动因素,总结典型制图产品
- 面向环境变化与技术革新,提出未来研究方向
湿地是支撑生物多样性和人类福祉的关键生态系统,但自20世纪以来显著退化。自1970年代起,遥感技术被用于湿地分类与制图以揭示其分布与变化。尽管已有部分综述,但对湿地分类与制图的科学重要性、主要数据与方法、变化驱动因素、现有研究范式与局限,以及在技术革新与全球环境变化背景下的挑战与机遇仍缺乏深入理解。本文通过分析超过1200篇论文,涵盖湿地类型、方法、传感器类型与研究区域,探讨了该领域的主流趋势。系统回顾并整合了湿地特征、现有数据与方法,总结典型湿地制图产品,并探究了多时空尺度下湿地变化的内在驱动因素。最后,讨论当前局限并提出应对全球环境变化与技术革新的未来方向。本综述整合了湿地遥感认知,为推动湿地科学变革性发展提供科学建议。
原文摘要 · Abstract (English)
Wetlands constitute critical ecosystems that support both biodiversity and human well-being; however, they have experienced a significant decline since the 20th century. Back in the 1970s, researchers began to employ remote sensing technologies for wetland classification and mapping to elucidate the extent and variations of wetlands. Although some review articles summarized the development of this field, there is a lack of a thorough and in-depth understanding of wetland classification and mapping: (1) the scientific importance of wetlands, (2) major data, methods used in wetland classification and mapping, (3) driving factors of wetland changes, (4) current research paradigm and limitations, (5) challenges and opportunities in wetland classification and mapping under the context of technological innovation and global environmental change. In this review, we aim to provide a comprehensive perspective and new insights into wetland classification and mapping for readers to answer these questions. First, we conduct a meta-analysis of over 1,200 papers, encompassing wetland types, methods, sensor types, and study sites, examining prevailing trends in wetland classification and mapping. Next, we review and synthesize the wetland features and existing data and methods in wetland classification and mapping. We also summarize typical wetland mapping products and explore the intrinsic driving factors of wetland changes across multiple spatial and temporal scales. Finally, we discuss current limitations and propose future directions in response to global environmental change and technological innovation. This review consolidates our understanding of wetland remote sensing and offers scientific recommendations that foster transformative progress in wetland science.
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