Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines

Since the inertial sensor error has been modulated effectively by the Rotation Modulation Technique (RMT), the Rotation Strapdown Inertial Navigation System (RSINS) has been widely used for submarines in order to satisfy the requirement of high-accuracy and long working duration. The performance of...

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Main Authors: Xiu-Wei Xia, Qian Sun
Format: Article
Language:English
Published: MDPI AG 2018-07-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/7/2123
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spelling doaj-9fc9525305274c6a8d40d95d9790815c2020-11-25T00:34:55ZengMDPI AGSensors1424-82202018-07-01187212310.3390/s18072123s18072123Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for SubmarinesXiu-Wei Xia0Qian Sun1College of Automation, Harbin Engineering University, Harbin 150001, ChinaCollege of Information and Communication Engineering, Harbin Engineering University, Harbin 150001, ChinaSince the inertial sensor error has been modulated effectively by the Rotation Modulation Technique (RMT), the Rotation Strapdown Inertial Navigation System (RSINS) has been widely used for submarines in order to satisfy the requirement of high-accuracy and long working duration. The performance of the initial alignment is main factor affecting the accuracy of the Strapdown Inertial Navigation System (SINS). The traditional initial alignment algorithm based on the compass method has bad performance when the misalignment angle is large, which will make the submarine SINS fail to launch properly in a complex operating environment. Since the RSINS uses the mathematical platform to calculate the navigation information, it allows multiple algorithms to run simultaneously, and different algorithms do not interact with each other. Thus, to improve the alignment accuracy, an initial alignment algorithm based on the Dual Mathematical Calculation System (DMCS) is proposed; moreover, to solve the problem of large azimuth misalignment angle, an improved DMCS-based alignment algorithm is also presented in this paper. Both simulations and experiments showed that the novel algorithm can effectively improve the initial alignment performance under the large misalignment angle environment, enhancing the environmental suitability of the RSINS.http://www.mdpi.com/1424-8220/18/7/2123initial alignmentRotation Strapdown Inertial Navigation System (RSINS)submarineDual Mathematical Calculation System (DMCS)large misalignment angle
collection DOAJ
language English
format Article
sources DOAJ
author Xiu-Wei Xia
Qian Sun
spellingShingle Xiu-Wei Xia
Qian Sun
Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
Sensors
initial alignment
Rotation Strapdown Inertial Navigation System (RSINS)
submarine
Dual Mathematical Calculation System (DMCS)
large misalignment angle
author_facet Xiu-Wei Xia
Qian Sun
author_sort Xiu-Wei Xia
title Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
title_short Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
title_full Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
title_fullStr Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
title_full_unstemmed Initial Alignment Algorithm Based on the DMCS Method in Single-Axis RSINS with Large Azimuth Misalignment Angles for Submarines
title_sort initial alignment algorithm based on the dmcs method in single-axis rsins with large azimuth misalignment angles for submarines
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2018-07-01
description Since the inertial sensor error has been modulated effectively by the Rotation Modulation Technique (RMT), the Rotation Strapdown Inertial Navigation System (RSINS) has been widely used for submarines in order to satisfy the requirement of high-accuracy and long working duration. The performance of the initial alignment is main factor affecting the accuracy of the Strapdown Inertial Navigation System (SINS). The traditional initial alignment algorithm based on the compass method has bad performance when the misalignment angle is large, which will make the submarine SINS fail to launch properly in a complex operating environment. Since the RSINS uses the mathematical platform to calculate the navigation information, it allows multiple algorithms to run simultaneously, and different algorithms do not interact with each other. Thus, to improve the alignment accuracy, an initial alignment algorithm based on the Dual Mathematical Calculation System (DMCS) is proposed; moreover, to solve the problem of large azimuth misalignment angle, an improved DMCS-based alignment algorithm is also presented in this paper. Both simulations and experiments showed that the novel algorithm can effectively improve the initial alignment performance under the large misalignment angle environment, enhancing the environmental suitability of the RSINS.
topic initial alignment
Rotation Strapdown Inertial Navigation System (RSINS)
submarine
Dual Mathematical Calculation System (DMCS)
large misalignment angle
url http://www.mdpi.com/1424-8220/18/7/2123
work_keys_str_mv AT xiuweixia initialalignmentalgorithmbasedonthedmcsmethodinsingleaxisrsinswithlargeazimuthmisalignmentanglesforsubmarines
AT qiansun initialalignmentalgorithmbasedonthedmcsmethodinsingleaxisrsinswithlargeazimuthmisalignmentanglesforsubmarines
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