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Remote sensing of soil surface properties

机译:遥感土壤表面特性

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Remote sensing is now in a strong position to provide meaningful spatial data for use in soil science investigations. In the last 10 years, advancements in remote sensing techniques and technologies have given rise to a wealth of exciting new research findings in soil-related disciplines. This paper provides a critical insight into the role played by remote sensing in this field, with a specific focus on soil surface monitoring. Two key soil properties are considered in this review, soil surface roughness and moisture, because these two variables have benefited most from recent cutting-edge advances in remote sensing. Of note is the fact that the major recent advancements in spatial assessment of soil structure have emerged from optical remote sensing, while the soil moisture community has benefited from advancements in microwave systems, justifying the focus of this paper in these specific directions. The paper considers the newest techniques within active, passive, optical and microwave remote sensing and concludes by considering future challenges, multisensor approaches and the issue of scale - which is a key cross-disciplinary research question of relevance to soil scientists and remote sensing scientists alike.
机译:如今,遥感技术处于有利地位,可提供有意义的空间数据以用于土壤科学研究。在过去的十年中,遥感技术的进步带来了与土壤相关学科的大量令人振奋的新研究成果。本文提供了对遥感在该领域中所起的作用的批判性见解,尤其着重于土壤表面监测。本文中考虑了两个关键的土壤特性,即土壤表面粗糙度和湿度,因为这两个变量已从遥感的最新前沿中受益最大。值得注意的是,土壤结构空间评估的最新主要进展来自光学遥感,而土壤水分社区已受益于微波系统的发展,这证明了本文在这些特定方向上的研究重点。本文考虑了有源,无源,光学和微波遥感领域的最新技术,并通过考虑未来的挑战,多传感器方法和规模问题得出结论-这是与土壤科学家和遥感科学家相关的一个关键的跨学科研究问题。

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