Javascript must be enabled to continue!
On-Orbit Autonomous Geometric Calibration of Directional Polarimetric Camera
View through CrossRef
The Directional Polarimetric Camera (DPC) carried by the Chinese GaoFen-5-02 (GF-5-02) satellite has the ability for multiangle, multispectral, and polarization detection and will play an important role in the inversion of atmospheric aerosol and cloud characteristics. To ensure the validity of the DPC on-orbit multiangle and multispectral polarization data, high-precision image registration and geolocation are vital. High-precision geometric model parameters are a prerequisite for on-orbit image registration and geolocation. Therefore, on the basis of the multiangle imaging characteristics of DPC, an on-orbit autonomous geometric calibration method without ground reference data is proposed. The method includes three steps: (1) preprocessing the original image of the DPC and the satellite attitude and orbit parameters; (2) scale-invariant feature transform (SIFT) algorithm to match homologous points between multiangle images; (3) optimization of geometric model parameters on-orbit using least square theory. To verify the effectiveness of the on-orbit autonomous geometric calibration method, the image registration performance and relative geolocation accuracy before and after DPC on-orbit geometric calibration were evaluated and analyzed using the SIFT algorithm and the coastline crossing method (CCM). The results show that the on-orbit autonomous geometric calibration effectively improves the DPC image registration and relative geolocation accuracy. After on-orbit calibration, the multiangle image registration accuracy is better than 1.530 km, the multispectral image registration accuracy is better than 0.650 km, and the relative geolocation accuracy is better than 1.275 km, all reaching the subpixel level (<1.7 km).
Title: On-Orbit Autonomous Geometric Calibration of Directional Polarimetric Camera
Description:
The Directional Polarimetric Camera (DPC) carried by the Chinese GaoFen-5-02 (GF-5-02) satellite has the ability for multiangle, multispectral, and polarization detection and will play an important role in the inversion of atmospheric aerosol and cloud characteristics.
To ensure the validity of the DPC on-orbit multiangle and multispectral polarization data, high-precision image registration and geolocation are vital.
High-precision geometric model parameters are a prerequisite for on-orbit image registration and geolocation.
Therefore, on the basis of the multiangle imaging characteristics of DPC, an on-orbit autonomous geometric calibration method without ground reference data is proposed.
The method includes three steps: (1) preprocessing the original image of the DPC and the satellite attitude and orbit parameters; (2) scale-invariant feature transform (SIFT) algorithm to match homologous points between multiangle images; (3) optimization of geometric model parameters on-orbit using least square theory.
To verify the effectiveness of the on-orbit autonomous geometric calibration method, the image registration performance and relative geolocation accuracy before and after DPC on-orbit geometric calibration were evaluated and analyzed using the SIFT algorithm and the coastline crossing method (CCM).
The results show that the on-orbit autonomous geometric calibration effectively improves the DPC image registration and relative geolocation accuracy.
After on-orbit calibration, the multiangle image registration accuracy is better than 1.
530 km, the multispectral image registration accuracy is better than 0.
650 km, and the relative geolocation accuracy is better than 1.
275 km, all reaching the subpixel level (<1.
7 km).
Related Results
(Invited) Strategies for Calibration Cost Reduction in Heterogeneous Chemical Sensor Arrays
(Invited) Strategies for Calibration Cost Reduction in Heterogeneous Chemical Sensor Arrays
Introduction
Heterogeneous gas sensor arrays coupled with machine learning algorithms have been proposed for a wide range of applications. However, i...
Calibration of Danuri/Wide-Angle Polarimetric Camera (PolCam): Preliminary Results
Calibration of Danuri/Wide-Angle Polarimetric Camera (PolCam): Preliminary Results
The wide-angle polarimetric camera (PolCam) aboard Danuri, South Korea’s first lunar orbiter, represents the first instrument to perform global polarimetric observations of the lun...
Multi-temporal polarimetric InSAR deformation monitoring considering spatiotemporal scattering variability
Multi-temporal polarimetric InSAR deformation monitoring considering spatiotemporal scattering variability
(English) Interferometric Synthetic Aperture Radar (InSAR) enables millimeter-level measurements of surface deformation over large areas and long time spans, and has become an impo...
The Moon as an Asteroid: Unlocking Surface Secrets with Atlas Polarimetry
The Moon as an Asteroid: Unlocking Surface Secrets with Atlas Polarimetry
IntroductionThe polarimetric properties of airless Solar System bodies provide invaluable insights into their surface characteristics. While extensively applied to asteroids, often...
Binocular vision calibration method for a long-wavelength infrared camera and a visible spectrum camera with different resolutions
Binocular vision calibration method for a long-wavelength infrared camera and a visible spectrum camera with different resolutions
We present a calibration plate for the binocular vision system, which is composed of a long-wavelength infrared camera and a visible spectrum camera with different resolutions. The...
Polarimetric differential SAR Interferometry with ground-based sensors
Polarimetric differential SAR Interferometry with ground-based sensors
Las técnicas de Interferometría Diferencial se basan en la combinación de varias imágenes SAR con distinta separación temporal y permiten la recuperación de las componentes lineale...
METRIC—Multi-Eye to Robot Indoor Calibration Dataset
METRIC—Multi-Eye to Robot Indoor Calibration Dataset
Multi-camera systems are an effective solution for perceiving large areas or complex scenarios with many occlusions. In such a setup, an accurate camera network calibration is cruc...
Machine learning techniques for forensic camera model identification and anti-forensic attacks
Machine learning techniques for forensic camera model identification and anti-forensic attacks
The goal of camera model identification is to determine the manufacturer and model of an image's source camera. Camera model identification is an important task in multimedia foren...

