Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Observing APOD with the AuScope VLBI Array

View through CrossRef
The possibility to observe satellites with the geodetic Very Long Baseline Interferometry (VLBI) technique is vividly discussed in the geodetic community, particularly with regard to future co-location satellite missions. The Chinese APOD-A nano satellite can be considered as a first prototype—suitable for practical observation tests—combining the techniques Satellite Laser Ranging (SLR), Global Navigation Satellite Systems (GNSS) and VLBI on a single platform in a Low Earth Orbit (LEO). Unfortunately, it has hardly been observed by VLBI, so major studies towards actual frame ties could not be performed. The main reason for the lack of observations was that VLBI observations of satellites are non-standard, and suitable observing strategies were not in place for this mission. This work now presents the first serious attempt to observe the satellite with a VLBI network over multiple passes. We introduce a series of experiments with the AuScope geodetic VLBI array which were carried out in November 2016, and describe all steps integrated in the established process chain: the experiment design and observation planning, the antenna tracking and control scheme, correlation and derivation of baseline-delays, and the data analysis yielding delay residuals on the level of 10 ns. The developed procedure chain can now serve as reference for future experiments, hopefully enabling the global VLBI network to be prepared for the next co-location satellite mission.
Title: Observing APOD with the AuScope VLBI Array
Description:
The possibility to observe satellites with the geodetic Very Long Baseline Interferometry (VLBI) technique is vividly discussed in the geodetic community, particularly with regard to future co-location satellite missions.
The Chinese APOD-A nano satellite can be considered as a first prototype—suitable for practical observation tests—combining the techniques Satellite Laser Ranging (SLR), Global Navigation Satellite Systems (GNSS) and VLBI on a single platform in a Low Earth Orbit (LEO).
Unfortunately, it has hardly been observed by VLBI, so major studies towards actual frame ties could not be performed.
The main reason for the lack of observations was that VLBI observations of satellites are non-standard, and suitable observing strategies were not in place for this mission.
This work now presents the first serious attempt to observe the satellite with a VLBI network over multiple passes.
We introduce a series of experiments with the AuScope geodetic VLBI array which were carried out in November 2016, and describe all steps integrated in the established process chain: the experiment design and observation planning, the antenna tracking and control scheme, correlation and derivation of baseline-delays, and the data analysis yielding delay residuals on the level of 10 ns.
The developed procedure chain can now serve as reference for future experiments, hopefully enabling the global VLBI network to be prepared for the next co-location satellite mission.

Related Results

Apolipoprotein D in Oxidative Stress and Inflammation
Apolipoprotein D in Oxidative Stress and Inflammation
Apolipoprotein D (ApoD) is lipocalin able to bind hydrophobic ligands. The APOD gene is upregulated in a number of pathologies, including Alzheimer’s disease, Parkinson’s disease, ...
Observing GNSS Satellites with the AuScope VLBI Array: A Testbed for the VLBI Component of the GENESIS Mission
Observing GNSS Satellites with the AuScope VLBI Array: A Testbed for the VLBI Component of the GENESIS Mission
Set for launch in 2028, geodesy’s flagship mission GENESIS is equipped with the instruments of the four space geodetic techniques. The co-location satellite aims to impro...
Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
Apolipoprotein D (ApoD) is a secreted lipocalin associated with neuroprotection and lipid metabolism. In rodent, the bulk of its expression occurs in the central nervous system. De...
Lipid-mediated reinforcement of FGF/MAPK signaling enables robust otic placode specification
Lipid-mediated reinforcement of FGF/MAPK signaling enables robust otic placode specification
Abstract The formation of cranial placodes requires groups of ectodermal cells to interpret inductive signals in a robust and organized manner, y...
Improvement of Geodetic Parameters Estimation by Continuous VLBI Campaign 2017 Using a Simulated Station in the Middle East
Improvement of Geodetic Parameters Estimation by Continuous VLBI Campaign 2017 Using a Simulated Station in the Middle East
Abstract Very long baseline interferometry (VLBI) is one of the most important techniques in geodesy. In this technique the differences between arrival times of a radio sig...
VLBI celestial and terrestrial reference frames VIE2022b
VLBI celestial and terrestrial reference frames VIE2022b
Context. We present the computation of global reference frames from very long baseline interferometry (VLBI) observations at the Vienna International VLBI Service for Geodesy and A...
The Lipocalin Apolipoprotein D Functional Portrait: A Systematic Review
The Lipocalin Apolipoprotein D Functional Portrait: A Systematic Review
Apolipoprotein D is a chordate gene early originated in the Lipocalin protein family. Among other features, regulation of its expression in a wide variety of disease conditions in ...
Station Infrastructure Developments of the IVS
Station Infrastructure Developments of the IVS
<p>The International VLBI Service for Geodesy and Astrometry (IVS) is a globally operating service that coordinates and performs Very Long Baseline Interferometry (VL...

Back to Top