Blind estimation of the PN sequence in lower SNR DS-SS signals with residual carrier

  • Authors:
  • Tianqi Zhang;Shaosheng Dai;Wei Zhang;Guoning Ma;Xiangyun Gao

  • Affiliations:
  • Chongqing Key Laboratory of Signal and Information Processing (CqKLS&IP), Chongqing University of Posts and Telecommunications (CQUPT), Chongqing 400065, PR China;Chongqing Key Laboratory of Signal and Information Processing (CqKLS&IP), Chongqing University of Posts and Telecommunications (CQUPT), Chongqing 400065, PR China;Institute of Electronic Engineering, China Academy of Engineering Physics (CAEP), Mianyang 621900, PR China;Institute of Electronic Engineering, China Academy of Engineering Physics (CAEP), Mianyang 621900, PR China;Chongqing Key Laboratory of Signal and Information Processing (CqKLS&IP), Chongqing University of Posts and Telecommunications (CQUPT), Chongqing 400065, PR China

  • Venue:
  • Digital Signal Processing
  • Year:
  • 2012

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Abstract

This paper presents a method of singular value decomposition (SVD) plus digital phase lock loop (DPLL) to solve the difficult problem of blind pseudo-noise (PN) sequence estimation in low signal to noise ratios (SNR) direct sequence spread spectrum (DS-SS, DS) signals with residual carrier. Of course, the method needs to know the parameters of DS signal, such as the period and code rate of PN sequence. Firstly, the received signal is sampled and divided into non-overlapping signal vectors according to a temporal window, whose duration is two periods of PN sequence. Then, an autocorrelation matrix is computed and accumulated by the signal vectors one by one. The PN sequence with residual carrier can be estimated by the principal eigenvector of this autocorrelation matrix. Furthermore, a DPLL is used to deal with the estimated PN sequence with residual carrier, it estimates and tracks the residual carrier, removes the residual carrier in the end. Theory analysis and computer simulation results show that this method can effectively realize the PN sequence estimation from the input DS signals with residual carrier in lower SNR.