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Multitemporal Remote Sensing : Methods and Applications /

Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Ban, Yifang. (Editor)
Format: eBook
Language:English
Published: Cham : Springer International Publishing : Imprint: Springer, 2016.
Edition:1st ed. 2016.
Series:Remote Sensing and Digital Image Processing, 20
Subjects:
Table of Contents:
  • Multitemporal remote sensing: Current status, trends and challenges
  • Change detection techniques: A review
  • Change detection in urban areas: Spatial and temporal scales
  • Change detection in multitemporal hyperspectral images
  • Object-based change detection in urban areas using multitemporal high resolution SAR images with unsupervised thresholding algorithms
  • Fusion of multitemporal spaceborne SAR and optical data for urban mapping and urbanization monitoring
  • Post-classification change detection in Arctic glaciers by multi-polarization SAR
  • Interferometric SAR multitemporal processing: Techniques and applications
  • TIMESAT for processing time-series data from satellite sensors for land surface monitoring
  • PhenoSat - A tool for remote sensing based analysis of vegetation dynamics
  • Temporal techniques in remote sensing of global vegetation
  • Soil moisture dynamics estimated from MODIS time series images
  • Temporal analysis of remotely sensed land surface shortwave Albedo
  • Observing the response of terrestrial vegetation to climate variability across a range of time scales by time series analysis of land surface temperature
  • A review of multitemporal synthetic aperture radar (SAR) for crop monitoring
  • An approach for determining relationships between disturbance and habitat selection using bi-weekly synthetic images and telemetry data
  • Multitemporal remote sensing for inland water bodies and wetland monitoring
  • Global land surface water mapping and analysis at 30m spatial resolution for years 2000 and 2010
  • Multitemporal remote sensing of coastal waters
  • Monitoring long-term disaster recovery - Space and ground views.