Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes

Polarimetric Synthetic Aperture Radar Interferometry (Pol-InSAR) based forest height estimation for ecosystem monitoring and management has been developing rapidly in recent years. Spaceborne Pol-InSAR systems with long temporal baselines of several days always lead to severe temporal decorrelation,...

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Main Authors: Chang Liu, Qi Zhang, Linlin Ge, Samad M. E. Sepasgozar, Ziheng Sheng
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Remote Sensing
Subjects:
Online Access:https://www.mdpi.com/2072-4292/15/7/1877
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author Chang Liu
Qi Zhang
Linlin Ge
Samad M. E. Sepasgozar
Ziheng Sheng
author_facet Chang Liu
Qi Zhang
Linlin Ge
Samad M. E. Sepasgozar
Ziheng Sheng
author_sort Chang Liu
collection DOAJ
description Polarimetric Synthetic Aperture Radar Interferometry (Pol-InSAR) based forest height estimation for ecosystem monitoring and management has been developing rapidly in recent years. Spaceborne Pol-InSAR systems with long temporal baselines of several days always lead to severe temporal decorrelation, which can cause a forest height overestimation error. However, most forest height estimation studies have not considered the change in dielectric property as a factor that may cause temporal decorrelation with a long temporal baseline. Therefore, it is necessary to propose a new method that considers dielectric fluctuations and random motions of scattering elements to compensate for the temporal decorrelation effect. The lack of ground truth for forest canopy also needs a solution. Unsupervised methods could be a solution because they do not require the use of true values of tree heights as the ground truth to calculate their estimation accuracies. This paper aims to present an unsupervised forest height estimation method called Dielectric Fluctuation and Random Motion over Ground (DF-RMoG) to improve accuracy by considering the dielectric fluctuations and random motions. Its performance is investigated using Advanced Land Observing Satellite (ALOS)-1 Pol-InSAR data acquired over a German forest site with temporal intervals of 46 and 92 days. The authors analyze the relationship between forest height and different parameters with DF-RMoG and conventional models. Compared with conventional models, the proposed DF-RMoG model significantly reduces the overestimation error due to temporal decorrelation in forest height estimation according to its lowest average forest height.
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spelling doaj.art-13dd2d2c833142fb90b790ebe7e803c22023-11-17T17:30:15ZengMDPI AGRemote Sensing2072-42922023-03-01157187710.3390/rs15071877Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property ChangesChang Liu0Qi Zhang1Linlin Ge2Samad M. E. Sepasgozar3Ziheng Sheng4School of Civil and Environmental Engineering, Faculty of Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaData Science in Earth Observation, Technical University of Munich (TUM), 85521 Ottobrunn, GermanySchool of Civil and Environmental Engineering, Faculty of Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaSchool of Built Environment, Faculty of Arts, Design & Architecture, University of New South Wales, Sydney, NSW 2052, AustraliaSchool of Civil and Environmental Engineering, Faculty of Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaPolarimetric Synthetic Aperture Radar Interferometry (Pol-InSAR) based forest height estimation for ecosystem monitoring and management has been developing rapidly in recent years. Spaceborne Pol-InSAR systems with long temporal baselines of several days always lead to severe temporal decorrelation, which can cause a forest height overestimation error. However, most forest height estimation studies have not considered the change in dielectric property as a factor that may cause temporal decorrelation with a long temporal baseline. Therefore, it is necessary to propose a new method that considers dielectric fluctuations and random motions of scattering elements to compensate for the temporal decorrelation effect. The lack of ground truth for forest canopy also needs a solution. Unsupervised methods could be a solution because they do not require the use of true values of tree heights as the ground truth to calculate their estimation accuracies. This paper aims to present an unsupervised forest height estimation method called Dielectric Fluctuation and Random Motion over Ground (DF-RMoG) to improve accuracy by considering the dielectric fluctuations and random motions. Its performance is investigated using Advanced Land Observing Satellite (ALOS)-1 Pol-InSAR data acquired over a German forest site with temporal intervals of 46 and 92 days. The authors analyze the relationship between forest height and different parameters with DF-RMoG and conventional models. Compared with conventional models, the proposed DF-RMoG model significantly reduces the overestimation error due to temporal decorrelation in forest height estimation according to its lowest average forest height.https://www.mdpi.com/2072-4292/15/7/1877forest heightPol-InSARrepeat-passspacebornetemporal decorrelationdielectric property
spellingShingle Chang Liu
Qi Zhang
Linlin Ge
Samad M. E. Sepasgozar
Ziheng Sheng
Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
Remote Sensing
forest height
Pol-InSAR
repeat-pass
spaceborne
temporal decorrelation
dielectric property
title Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
title_full Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
title_fullStr Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
title_full_unstemmed Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
title_short Dielectric Fluctuation and Random Motion over Ground Model (DF-RMoG): An Unsupervised Three-Stage Method of Forest Height Estimation Considering Dielectric Property Changes
title_sort dielectric fluctuation and random motion over ground model df rmog an unsupervised three stage method of forest height estimation considering dielectric property changes
topic forest height
Pol-InSAR
repeat-pass
spaceborne
temporal decorrelation
dielectric property
url https://www.mdpi.com/2072-4292/15/7/1877
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AT linlinge dielectricfluctuationandrandommotionovergroundmodeldfrmoganunsupervisedthreestagemethodofforestheightestimationconsideringdielectricpropertychanges
AT samadmesepasgozar dielectricfluctuationandrandommotionovergroundmodeldfrmoganunsupervisedthreestagemethodofforestheightestimationconsideringdielectricpropertychanges
AT zihengsheng dielectricfluctuationandrandommotionovergroundmodeldfrmoganunsupervisedthreestagemethodofforestheightestimationconsideringdielectricpropertychanges