Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning

Phase-frequency characteristics of approximate sinusoidal geomagnetic signals can be used for projectile roll positioning and other high-precision trajectory correction applications. The sinusoidal geomagnetic signal deforms in the exposed and magnetically contaminated environment. In order to preci...

Full description

Bibliographic Details
Main Authors: Ting-ting Yin, Fang-xiu Jia, Xiao-ming Wang
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-04-01
Series:Defence Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214914719304428
_version_ 1818865937123639296
author Ting-ting Yin
Fang-xiu Jia
Xiao-ming Wang
author_facet Ting-ting Yin
Fang-xiu Jia
Xiao-ming Wang
author_sort Ting-ting Yin
collection DOAJ
description Phase-frequency characteristics of approximate sinusoidal geomagnetic signals can be used for projectile roll positioning and other high-precision trajectory correction applications. The sinusoidal geomagnetic signal deforms in the exposed and magnetically contaminated environment. In order to preciously recognize the roll information and effectively separate the noise component from the original geomagnetic sequence, based on the error source analysis, we propose a moving horizon based wavelet de-noising method for the dual-observed geomagnetic signal filtering where the captured rough roll frequency value provides reasonable wavelet decomposition and reconstruction level selection basis for sampled sequence; a moving horizon window guarantees real-time performance and non-cumulative calculation amount. The complete geomagnetic data in full ballistic range and three intercepted paragraphs are used for performance assessment. The positioning performance of the moving horizon wavelet de-noising method is compared with the band-pass filter. The results show that both noise reduction techniques improve the positioning accuracy while the wavelet de-noising method is always better than the band-pass filter. These results suggest that the proposed moving horizon based wavelet de-noising method of the dual-observed geomagnetic signal is more applicable for various launch conditions with better positioning performance.
first_indexed 2024-12-19T10:55:29Z
format Article
id doaj.art-7c8c0b26c1834b0fab96b1d3f3cd4e88
institution Directory Open Access Journal
issn 2214-9147
language English
last_indexed 2024-12-19T10:55:29Z
publishDate 2020-04-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Defence Technology
spelling doaj.art-7c8c0b26c1834b0fab96b1d3f3cd4e882022-12-21T20:24:50ZengKeAi Communications Co., Ltd.Defence Technology2214-91472020-04-01162417424Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioningTing-ting Yin0Fang-xiu Jia1Xiao-ming Wang2ZNDY of Ministerial Key Laboratory, Nanjing University of Science and Technology, Nanjing, 210094, ChinaCorresponding author.; ZNDY of Ministerial Key Laboratory, Nanjing University of Science and Technology, Nanjing, 210094, ChinaZNDY of Ministerial Key Laboratory, Nanjing University of Science and Technology, Nanjing, 210094, ChinaPhase-frequency characteristics of approximate sinusoidal geomagnetic signals can be used for projectile roll positioning and other high-precision trajectory correction applications. The sinusoidal geomagnetic signal deforms in the exposed and magnetically contaminated environment. In order to preciously recognize the roll information and effectively separate the noise component from the original geomagnetic sequence, based on the error source analysis, we propose a moving horizon based wavelet de-noising method for the dual-observed geomagnetic signal filtering where the captured rough roll frequency value provides reasonable wavelet decomposition and reconstruction level selection basis for sampled sequence; a moving horizon window guarantees real-time performance and non-cumulative calculation amount. The complete geomagnetic data in full ballistic range and three intercepted paragraphs are used for performance assessment. The positioning performance of the moving horizon wavelet de-noising method is compared with the band-pass filter. The results show that both noise reduction techniques improve the positioning accuracy while the wavelet de-noising method is always better than the band-pass filter. These results suggest that the proposed moving horizon based wavelet de-noising method of the dual-observed geomagnetic signal is more applicable for various launch conditions with better positioning performance.http://www.sciencedirect.com/science/article/pii/S2214914719304428High-spin projectile roll positioningDual-observed geomagnetic signalWavelet de-noisingDiscrete wavelet transform
spellingShingle Ting-ting Yin
Fang-xiu Jia
Xiao-ming Wang
Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
Defence Technology
High-spin projectile roll positioning
Dual-observed geomagnetic signal
Wavelet de-noising
Discrete wavelet transform
title Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
title_full Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
title_fullStr Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
title_full_unstemmed Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
title_short Moving horizon based wavelet de-noising method of dual-observed geomagnetic signal for nonlinear high spin projectile roll positioning
title_sort moving horizon based wavelet de noising method of dual observed geomagnetic signal for nonlinear high spin projectile roll positioning
topic High-spin projectile roll positioning
Dual-observed geomagnetic signal
Wavelet de-noising
Discrete wavelet transform
url http://www.sciencedirect.com/science/article/pii/S2214914719304428
work_keys_str_mv AT tingtingyin movinghorizonbasedwaveletdenoisingmethodofdualobservedgeomagneticsignalfornonlinearhighspinprojectilerollpositioning
AT fangxiujia movinghorizonbasedwaveletdenoisingmethodofdualobservedgeomagneticsignalfornonlinearhighspinprojectilerollpositioning
AT xiaomingwang movinghorizonbasedwaveletdenoisingmethodofdualobservedgeomagneticsignalfornonlinearhighspinprojectilerollpositioning