BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal

Abstract For improving the anti‐interference performance and compatibility of a navigation‐augmented signal in future BeiDou Global Navigation Satellite Systems, a new modulation based on chirp subcarriers is proposed, named binary offset chirp carrier modulation, which is formed by multiplying a pe...

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Autores principales: Xin Zhao, Xinming M. Huang, Guangfu F. Sun
Formato: article
Lenguaje:EN
Publicado: Wiley 2021
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Acceso en línea:https://doaj.org/article/b246a31a0b054135909fc06837321658
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spelling oai:doaj.org-article:b246a31a0b054135909fc068373216582021-11-16T10:18:22ZBOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal1350-911X0013-519410.1049/ell2.12009https://doaj.org/article/b246a31a0b054135909fc068373216582021-01-01T00:00:00Zhttps://doi.org/10.1049/ell2.12009https://doaj.org/toc/0013-5194https://doaj.org/toc/1350-911XAbstract For improving the anti‐interference performance and compatibility of a navigation‐augmented signal in future BeiDou Global Navigation Satellite Systems, a new modulation based on chirp subcarriers is proposed, named binary offset chirp carrier modulation, which is formed by multiplying a periodic binary chirp subcarrier with a spreading code signal. And it can make use of the time‐varying frequency for shaping the spectrum and have superior performance in anti‐interference, similar advantage in tracking accuracy, anti‐multipath capability and compatibility compared with binary offset carrier modulations. The binary offset chirp carrier modulations proposed in this paper provide a potential signal design for the future low earth orbit (LEO) navigation‐augmented Global Navigation Satellite Systems.Xin ZhaoXinming M. HuangGuangfu F. SunWileyarticleElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENElectronics Letters, Vol 57, Iss 1, Pp 36-38 (2021)
institution DOAJ
collection DOAJ
language EN
topic Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Xin Zhao
Xinming M. Huang
Guangfu F. Sun
BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
description Abstract For improving the anti‐interference performance and compatibility of a navigation‐augmented signal in future BeiDou Global Navigation Satellite Systems, a new modulation based on chirp subcarriers is proposed, named binary offset chirp carrier modulation, which is formed by multiplying a periodic binary chirp subcarrier with a spreading code signal. And it can make use of the time‐varying frequency for shaping the spectrum and have superior performance in anti‐interference, similar advantage in tracking accuracy, anti‐multipath capability and compatibility compared with binary offset carrier modulations. The binary offset chirp carrier modulations proposed in this paper provide a potential signal design for the future low earth orbit (LEO) navigation‐augmented Global Navigation Satellite Systems.
format article
author Xin Zhao
Xinming M. Huang
Guangfu F. Sun
author_facet Xin Zhao
Xinming M. Huang
Guangfu F. Sun
author_sort Xin Zhao
title BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
title_short BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
title_full BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
title_fullStr BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
title_full_unstemmed BOCC: A new modulation based on chirp subcarriers for future BeiDou LEO navigation‐augmented signal
title_sort bocc: a new modulation based on chirp subcarriers for future beidou leo navigation‐augmented signal
publisher Wiley
publishDate 2021
url https://doaj.org/article/b246a31a0b054135909fc06837321658
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AT xinmingmhuang boccanewmodulationbasedonchirpsubcarriersforfuturebeidouleonavigationaugmentedsignal
AT guangfufsun boccanewmodulationbasedonchirpsubcarriersforfuturebeidouleonavigationaugmentedsignal
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