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A Novel Unambiguous Correlation Function for Cosine-Phased BOC Signal Tracking

코사인 위상 이진 옵셋 반송파 신호 추적에 알맞은 새로운 비모호 상관함수

  • 김홍득 (성균관대학교 정보통신대학) ;
  • 이영석 (성균관대학교 정보통신대학) ;
  • 윤석호 (성균관대학교 정보통신대학)
  • Received : 2013.04.08
  • Accepted : 2013.04.25
  • Published : 2013.05.31

Abstract

In this paper, we propose a correlation function using newly designed local signals for cosine-phased binary offset carrier (BOC) signal tracking. First, we divide a sub-carrier pulse over one pseudo random noise code period into multiple rectangular pulses, and subsequently, design novel local signals. Then, we obtain a correlation function with no side-peak based on a combination of correlations between the newly generated local signals and received cosine-phased BOC signal. From numerical results, it is confirmed that the proposed correlation function provides a tracking performance improvement over the conventional correlation functions in terms of the tracking error standard deviation.

본 논문에서는 코사인 위상 이진 옵셋 반송파 (binary offset carrier: BOC) 신호 추적에 알맞은 새로운 비모호 상관함수를 제안한다. 구체적으로는 코사인 위상 BOC 신호를 의사잡음코드의 칩 하나 안에 다수의 부반송파 펄스가 존재하는 형태로 해석하고, 그에 따른 새로운 국소신호들을 설계한다. 이후 새로운 국소신호들과 수신된 코사인 위상 BOC 신호를 상관하여 재조합함으로써 주변 첨두가 없는 새로운 비모호 상관함수를 생성한다. 모의실험을 통해 제안한 상관함수를 이용한 경우 기존의 상관함수들을 이용한 경우들에 비해 더욱 향상된 추적 오차 표준편차를 가지는 것을 확인한다.

Keywords

References

  1. E. Kaplan and C. Hegarty, Understanding GPS: Principles and Applications, 2nd Ed., Artech House, 2006.
  2. J. A. A.-Rodriguez, G. W. Hein, S. Wallner, J.-Luclssler, L. Ries, L. Lestarquit, A. de Latour, J. Godet, F. Bastide, T. pratt, and J. Owen, "The MBOC modulation: The final touch to the Galileo frequency and signal plan," in Proc. ION GNSS 2007, pp. 1515-1529, Fort Worth, TX, Sep. 2007.
  3. Z. Chen, J. C. Guo, J. Zhao, T. H. Tang, and B. Li, "The chaotic-BOC used in the positioning of L1 signal in GPS/Galileo system," Appl. Mechanics and Materials, vol. 58-60, pp. 2450-2455, June 2011. https://doi.org/10.4028/www.scientific.net/AMM.58-60.2450
  4. J. W. Betz, "Binary offset carrier modulations for radionavigation," J. ION, vol. 48, no. 4, pp. 227-246, Winter 2001-2002.
  5. P. Fine and W. Wilson, "Tracking algorithm for GPS offset carrier signals," in Proc. 1999 ION Nat. Tech. Meeting, pp. 671-676, San Diego, CA, Jan. 1999.
  6. N. Martin, V. Leblond, G. Guillotel, and V. Heiris, "BOC(x,y) signal acquisition techniques and performances," in Proc. 2003 ION GPS/GNSS, pp. 188-198, Portland, OR, Sep. 2003.
  7. O. Julien, C. Macabiau, M. E. Cannon, and G. Lachapelle, "ASPeCT: Unambiguous sine-BOC(n,n) acquisition/tracking technique for navigation applications," IEEE Trans. Aero. Electron. Syst., vol. 43, no. 1, pp. 150-162, Jan. 2007. https://doi.org/10.1109/TAES.2007.357123
  8. Z. Yao, X. Cui, M. Lu, Z. Feng, and J. Yang, "Pseudo-correlation-function-based unambiguous tracking technique for sine-BOC signals," IEEE Trans. Aero. Electron. Syst., vol. 46, no. 4, pp. 1782-1796, Oct. 2010. https://doi.org/10.1109/TAES.2010.5595594
  9. J. Wu and A. G. Dempster, "Applying a BOC-PRN discriminator to cosine phased BOC($f_s,\;f_c$) modulation," Electron. Lett., vol. 45, no. 13, pp. 689-691, June 2009. https://doi.org/10.1049/el.2009.0374
  10. F. D. Nunes, F. M. G. Sousa, and J. M. N. Leitao, "Gating functions of for multipath mitigation in GNSS BOC signals," IEEE Trans. Aero. Electron. Syst., vol. 43, no. 3, pp. 951-964, July 2007. https://doi.org/10.1109/TAES.2007.4383585
  11. Y. Lee, H. S. Kim, and S. Yoon, "Code tracking scheme for cosine phased BOC signals based on combination of sub-correlations," J. KICS, vol. 36, no. 9, pp. 581-588, Sep. 2011. https://doi.org/10.7840/KICS.2011.36C.9.581
  12. A. J. Van Dierendonck, P. Fenton, and T. Ford, "Theory and performance of narrow correlator spacing in a GPS receiver," J. ION, vol. 39, no. 3, pp. 265-283, Fall 1992.