Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances

In this contribution the integrity of single- receiver, single-channel, multi-frequency GNSS models is studied. The uniformly most powerful invariant test statistics for spikes and slips are derived and their detection capabilities are described by means of minimal detectable biases (MDBs). Analytic...

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Main Authors: Teunissen, Peter, de Bakker, P.
Format: Journal Article
Published: Springer - Verlag 2013
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/39435
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author Teunissen, Peter
de Bakker, P.
author_facet Teunissen, Peter
de Bakker, P.
author_sort Teunissen, Peter
building Curtin Institutional Repository
collection Online Access
description In this contribution the integrity of single- receiver, single-channel, multi-frequency GNSS models is studied. The uniformly most powerful invariant test statistics for spikes and slips are derived and their detection capabilities are described by means of minimal detectable biases (MDBs). Analytical closed-form expressions of the phase-slip, code-outlier and ionospheric-disturbance MDBs are given, thus providing insight into the various factors that contribute to the detection capabilities of the various test statistics. This is also done for the phaseless and codeless cases, as well as for the case of a temporary loss-of-lock on all frequencies. The analytical analysis presented is supported by means of numerical results.
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spelling curtin-20.500.11937-394352017-09-13T14:25:26Z Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances Teunissen, Peter de Bakker, P. Minimal detectable bias (MDB) single-channel model Ionospheric disturbance Phase-slips and code-outliers Uniformly most powerful tests Global navigation satellite systems (GNSS) Single-receiver In this contribution the integrity of single- receiver, single-channel, multi-frequency GNSS models is studied. The uniformly most powerful invariant test statistics for spikes and slips are derived and their detection capabilities are described by means of minimal detectable biases (MDBs). Analytical closed-form expressions of the phase-slip, code-outlier and ionospheric-disturbance MDBs are given, thus providing insight into the various factors that contribute to the detection capabilities of the various test statistics. This is also done for the phaseless and codeless cases, as well as for the case of a temporary loss-of-lock on all frequencies. The analytical analysis presented is supported by means of numerical results. 2013 Journal Article http://hdl.handle.net/20.500.11937/39435 10.1007/s00190-012-0588-x Springer - Verlag fulltext
spellingShingle Minimal detectable bias (MDB)
single-channel model
Ionospheric disturbance
Phase-slips and code-outliers
Uniformly most powerful tests
Global navigation satellite systems (GNSS)
Single-receiver
Teunissen, Peter
de Bakker, P.
Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title_full Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title_fullStr Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title_full_unstemmed Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title_short Single-receiver single-channel multi-frequency GNSS integrity: outliers, slips, and ionospheric disturbances
title_sort single-receiver single-channel multi-frequency gnss integrity: outliers, slips, and ionospheric disturbances
topic Minimal detectable bias (MDB)
single-channel model
Ionospheric disturbance
Phase-slips and code-outliers
Uniformly most powerful tests
Global navigation satellite systems (GNSS)
Single-receiver
url http://hdl.handle.net/20.500.11937/39435