Optimization-based Attitude Determination in Geodetic Applications

A new approach to determining the attitude of a rigid body is suggested, which does not rely on the use of magnetometers. In the framework of this approach, the problem of determining the attitude reduces to solving a minimization problem for a function of three variables (angles characterizing the...

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Main Authors: Pesterev Alexander, Matrosov Ivan, Morozov Yury
Format: Article
Language:English
Published: De Gruyter 2020-08-01
Series:Open Computer Science
Subjects:
Online Access:https://doi.org/10.1515/comp-2020-0146
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spelling doaj-e8bd8da61c4040ada08c296df500e7492021-09-06T19:19:43ZengDe GruyterOpen Computer Science2299-10932020-08-0110127027510.1515/comp-2020-0146comp-2020-0146Optimization-based Attitude Determination in Geodetic ApplicationsPesterev Alexander0Matrosov Ivan1Morozov Yury2Institute of Control Sciences, Moscow, RussiaJavad GNSS, Moscow, RussiaInstitute of Control Sciences, Moscow, RussiaA new approach to determining the attitude of a rigid body is suggested, which does not rely on the use of magnetometers. In the framework of this approach, the problem of determining the attitude reduces to solving a minimization problem for a function of three variables (angles characterizing the initial attitude of the body). The proposed method can be employed in precise geodetic measurements carried out with the use of a geodetic pole with a satellite antenna and an IMU installed on its top when, for some reasons, the surveyor cannot position the pole vertically (e.g., near walls or buildings). The use of the traditional approach, which relies on a compass and accelerometers, in this case does not ensure the desired accuracy of the attitude determination due to magnetic disturbances (both external ones and those induced by the receiver) affecting badly compass readings. The discussion is illustrated by results of field experiments.https://doi.org/10.1515/comp-2020-0146rigid body attitudepoisson kinematic equation3-axis gyrognss measurements
collection DOAJ
language English
format Article
sources DOAJ
author Pesterev Alexander
Matrosov Ivan
Morozov Yury
spellingShingle Pesterev Alexander
Matrosov Ivan
Morozov Yury
Optimization-based Attitude Determination in Geodetic Applications
Open Computer Science
rigid body attitude
poisson kinematic equation
3-axis gyro
gnss measurements
author_facet Pesterev Alexander
Matrosov Ivan
Morozov Yury
author_sort Pesterev Alexander
title Optimization-based Attitude Determination in Geodetic Applications
title_short Optimization-based Attitude Determination in Geodetic Applications
title_full Optimization-based Attitude Determination in Geodetic Applications
title_fullStr Optimization-based Attitude Determination in Geodetic Applications
title_full_unstemmed Optimization-based Attitude Determination in Geodetic Applications
title_sort optimization-based attitude determination in geodetic applications
publisher De Gruyter
series Open Computer Science
issn 2299-1093
publishDate 2020-08-01
description A new approach to determining the attitude of a rigid body is suggested, which does not rely on the use of magnetometers. In the framework of this approach, the problem of determining the attitude reduces to solving a minimization problem for a function of three variables (angles characterizing the initial attitude of the body). The proposed method can be employed in precise geodetic measurements carried out with the use of a geodetic pole with a satellite antenna and an IMU installed on its top when, for some reasons, the surveyor cannot position the pole vertically (e.g., near walls or buildings). The use of the traditional approach, which relies on a compass and accelerometers, in this case does not ensure the desired accuracy of the attitude determination due to magnetic disturbances (both external ones and those induced by the receiver) affecting badly compass readings. The discussion is illustrated by results of field experiments.
topic rigid body attitude
poisson kinematic equation
3-axis gyro
gnss measurements
url https://doi.org/10.1515/comp-2020-0146
work_keys_str_mv AT pesterevalexander optimizationbasedattitudedeterminationingeodeticapplications
AT matrosovivan optimizationbasedattitudedeterminationingeodeticapplications
AT morozovyury optimizationbasedattitudedeterminationingeodeticapplications
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