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Remote sensing applications to support sustainable natural resource management.

机译:遥感应用程序支持可持续的自然资源管理。

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摘要

The original design of this dissertation project was relatively simple and straightforward. It was intended to produce one single, dynamic, classification and mapping system for existing vegetation that could rely on commonly available inventory and remote sensing data. This classification and mapping system was intended to provide the analytical basis for resource planning and management. The problems encountered during the first phase of the original design transformed this project into an extensive analysis of the nature of these problems and a decade-long remote sensing applications development endeavor. What evolved from this applications development process is a portion of what has become a "system of systems" to inform and support natural resource management.; This dissertation presents the progression of work that sequentially developed a suite of remote sensing applications designed to address different aspects of the problems encountered with the original project. These remote sensing applications feature different resource issues, and resource components and are presented in separate chapters. Chapter one provides an introduction and description of the project evolution and chapter six provides a summary of the work and concluding discussion. Chapters two through five describe remote sensing applications that represent related, yet independent studies that are presented essentially as previously published.; Chapter two evaluates different approaches to classifying and mapping fire severity using multi-temporal Landsat TM data. The recommended method currently represents the analytical basis for fire severity data produced by the USDA Forest Service and the US Geological Survey. Chapter three also uses multi-temporal Landsat data and compares quantitative, remote-sensing-based change detection methods for forest management related canopy change. The recommended method has been widely applied for a variety of forest health and disaster response applications. Chapter four presents a method for multi-source and multi-classifier regional land cover mapping that is currently incorporated in the USDA Forest Service Existing Vegetation Classification and Mapping Technical Guide. Chapter five presents a study using nearest neighbor imputation methods to generate geospatial data surfaces for simulation modeling of vegetation through time and space. While these results have not yet been successful enough to support widespread adoption and implementation, it is possible that these general methods can be adapted to perform adequately for simulation modeling data needs.
机译:该论文项目的原始设计相对简单明了。它旨在为现有植被生产一个单一的,动态的,分类和制图系统,该系统可以依赖于常用的清单和遥感数据。该分类和制图系统旨在为资源规划和管理提供分析依据。在原始设计的第一阶段遇到的问题使该项目变成了对这些问题的性质的广泛分析,并进行了长达十年的遥感应用开发。从此应用程序开发过程演变而来的内容已成为通知和支持自然资源管理的“系统系统”的一部分。本文介绍了按顺序开发一套遥感应用程序的工作进展,这些应用程序旨在解决原始项目遇到的问题的不同方面。这些遥感应用程序具有不同的资源问题和资源组件,并在单独的章节中介绍。第一章对项目的发展进行了介绍和描述,第六章对工作进行了总结并进行了总结性讨论。第二章至第五章描述了遥感应用,这些遥感应用代表了相关但独立的研究,这些研究基本上按照以前的方法发表。第二章评估了使用多时态Landsat TM数据对火灾严重性进行分类和映射的不同方法。目前,推荐的方法代表了由美国农业部森林服务局和美国地质调查局提供的火灾严重性数据的分析基础。第三章还使用了多时态Landsat数据,并比较了基于遥感的定量变化检测方法,用于与森林经营相关的冠层变化。推荐的方法已广泛应用于各种森林健康和灾害应对应用。第四章介绍了一种用于多源和多分类器的区域土地覆被制图的方法,该方法目前已纳入《美国农业部森林服务局现有植被分类和制图技术指南》。第五章介绍了使用最近邻插补方法生成地理空间数据表面以进行时空模拟的建模方法的研究。尽管这些结果还不够成功,不足以支持广泛的采用和实施,但这些通用方法仍可能适合于为模拟建模数据需求充分执行。

著录项

  • 作者

    Brewer, Charles Kenneth.;

  • 作者单位

    University of Montana.$bForestry.;

  • 授予单位 University of Montana.$bForestry.;
  • 学科 Biology Ecology.; Agriculture Forestry and Wildlife.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);森林生物学;遥感技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:51

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