2023
DOI: 10.3390/rs15245776
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Usage of Airborne LiDAR Data and High-Resolution Remote Sensing Images in Implementing the Smart City Concept

Anna Uciechowska-Grakowicz,
Oscar Herrera-Granados,
Stanisław Biernat
et al.

Abstract: The cities of the future should not only be smart, but also smart green, for the well-being of their inhabitants, the biodiversity of their ecosystems and for greater resilience to climate change. In a smart green city, the location of urban green spaces should be based on an analysis of the ecosystem services they provide. Therefore, it is necessary to develop appropriate information technology tools that process data from different sources to support the decision-making process by analysing ecosystem service… Show more

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Cited by 3 publications
(1 citation statement)
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“…Accurate forest biomass estimation is essential for forestry management [10], enabling the determination of forest productivity, wood resources, and bioenergy potential. This involves monitoring changes in tree crowns and biomass quantity with respect to variations in air pollution, carbon dioxide (CO 2 ) levels, temperature, and precipitation [11][12][13][14]. Based on tree biomass, the absorption of carbon dioxide from the atmosphere can be calculated using indicators, like Leaf Area Index (LAI) [15][16][17][18] and other coefficients extensively described in [19].…”
Section: Introductionmentioning
confidence: 99%
“…Accurate forest biomass estimation is essential for forestry management [10], enabling the determination of forest productivity, wood resources, and bioenergy potential. This involves monitoring changes in tree crowns and biomass quantity with respect to variations in air pollution, carbon dioxide (CO 2 ) levels, temperature, and precipitation [11][12][13][14]. Based on tree biomass, the absorption of carbon dioxide from the atmosphere can be calculated using indicators, like Leaf Area Index (LAI) [15][16][17][18] and other coefficients extensively described in [19].…”
Section: Introductionmentioning
confidence: 99%