Non-data-aided timing recovery algorithm for MIL-STD SOQPSK

The phase trajectory of military standard (MIL-STD) shaped-offset quadrature phase shift keying (SOQPSK) is analysed and the fourth-power nonlinearity and phase accumulation technology is used to eliminate the self-noise caused by symbol information. After the operation, the MIL-STD SOQPSK signal is...

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Vydáno v:Electronics letters Ročník 51; číslo 5; s. 423 - 425
Hlavní autoři: Wang, Qifeng, Huang, Benxiong, Xu, Zhengguang
Médium: Journal Article
Jazyk:angličtina
Vydáno: The Institution of Engineering and Technology 05.03.2015
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ISSN:0013-5194, 1350-911X, 1350-911X
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Shrnutí:The phase trajectory of military standard (MIL-STD) shaped-offset quadrature phase shift keying (SOQPSK) is analysed and the fourth-power nonlinearity and phase accumulation technology is used to eliminate the self-noise caused by symbol information. After the operation, the MIL-STD SOQPSK signal is converted into a pure tone during a symbol period and the timing offset is estimated from the initial phase of the tone. Computer simulation shows that its estimation performance is remarkably close to the modified Cramer-Rao bound and better than that of the existing non-data-aided method in terms of estimation accuracy.
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content type line 23
ISSN:0013-5194
1350-911X
1350-911X
DOI:10.1049/el.2014.4016