4.7 Article

A Versatile, Production-Oriented Approach to High-Resolution Tree-Canopy Mapping in Urban and Suburban Landscapes Using GEOBIA and Data Fusion

期刊

REMOTE SENSING
卷 6, 期 12, 页码 12837-12865

出版社

MDPI
DOI: 10.3390/rs61212837

关键词

tree canopy; urban; urban tree canopy (UTC) assessment; UTC assessment; geographic object-based image analysis; change detection; eCognition; LiDAR; multispectral imagery

资金

  1. USDA Forest Service's Northern Research Station
  2. National Science Foundation [1053559, 1065785, DEB 1027188]
  3. National Aeronautics and Space Administration [NNX12AN07G]
  4. Division Of Environmental Biology
  5. Direct For Biological Sciences [1053559] Funding Source: National Science Foundation
  6. Division Of Environmental Biology
  7. Direct For Biological Sciences [1345795] Funding Source: National Science Foundation

向作者/读者索取更多资源

The benefits of tree canopy in urban and suburban landscapes are increasingly well known: stormwater runoff control, air-pollution mitigation, temperature regulation, carbon storage, wildlife habitat, neighborhood cohesion, and other social indicators of quality of life. However, many urban areas lack high-resolution tree canopy maps that document baseline conditions or inform tree-planting programs, limiting effective study and management. This paper describes a GEOBIA approach to tree-canopy mapping that relies on existing public investments in LiDAR, multispectral imagery, and thematic GIS layers, thus eliminating or reducing data acquisition costs. This versatile approach accommodates datasets of varying content and quality, first using LiDAR derivatives to identify aboveground features and then a combination of LiDAR and imagery to differentiate trees from buildings and other anthropogenic structures. Initial tree canopy objects are then refined through contextual analysis, morphological smoothing, and small-gap filling. Case studies from locations in the United States and Canada show how a GEOBIA approach incorporating data fusion and enterprise processing can be used for producing high-accuracy, high-resolution maps for large geographic extents. These maps are designed specifically for practical application by planning and regulatory end users who expect not only high accuracy but also high realism and visual coherence.

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