Carrier tracking loop for high-dynamic spread spectrum signals aided by estimation of Doppler rate

Hao Huan*, Yu Mei Zhao, Ran Tao, Gui Ying Wang

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

5 Citations (Scopus)

Abstract

To reach a compromise between efficient dynamic performance and high tracking accuracy of carrier tracking loop in high-dynamic circumstance which results in large Doppler frequency and Doppler rate, a tracking loop structure aided by the estimation of Doppler rate is proposed in this paper. First, the instant self-correlation function is used for a process of dimension-reduction of the received signal. Second, the high resolution estimation of Doppler rate is achieved by making use of the phase difference of segmental discrete Fourier transform (DFT). Finally, the estimation of Doppler rate as a control variable of numerical controlled oscillator (NCO) is added in the traditional tracking loop to reduce the dynamic stress and to improve the tracking accuracy. Tracking performance of this loop is simulated under typical high-dynamic conditions, the RMS of Doppler frequency error tracked is only 3.46Hz with carrier to noise power ratio (C/N0) 33DB-Hz. Compared to the general methods of 2nd FLL assisting 3rd PLL and linear Kalman filter in 3rd PLL, the performance is improved obviously under low C/N0.

Original languageEnglish
Title of host publicationICSP 2012 - 2012 11th International Conference on Signal Processing, Proceedings
Pages1378-1383
Number of pages6
DOIs
Publication statusPublished - 2012
Event2012 11th International Conference on Signal Processing, ICSP 2012 - Beijing, China
Duration: 21 Oct 201225 Oct 2012

Publication series

NameInternational Conference on Signal Processing Proceedings, ICSP
Volume2

Conference

Conference2012 11th International Conference on Signal Processing, ICSP 2012
Country/TerritoryChina
CityBeijing
Period21/10/1225/10/12

Keywords

  • Carrier tracking
  • DFT
  • Doppler rate
  • Instant self-correlation
  • high-dynamic

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