TY - JOUR
T1 - A novel doppler rate estimator based on fractional fourier transform for high-dynamic gnss signal
AU - Luo, Yiran
AU - Yu, Chunyang
AU - Chen, Shaohua
AU - Li, Jian
AU - Ruan, Hang
AU - El-Sheimy, Naser
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2019
Y1 - 2019
N2 - When the fractional Fourier transform (FRFT) is introduced into the weak and high-dynamic global navigation satellite system (GNSS) signal acquisition, the 2-D search cell will be transferred to a 3-D one with respect to the code chip, the Doppler shift, and the Doppler rate. The proper determinations of the code bin and Doppler shift bin in the acquisition process have already been covered in the previous researches. The aim of this paper is to provide an exhaustive analysis of the approach to specify an optimal FRFT order bin, in terms of the Doppler shift rate. The lower and upper bound of FRFT order ranges is determined by the incoming signal dynamics. Then, we propose a precise model to yield an optimal FRFT order bin. Besides, a novel and fast Doppler estimator based on the non-linear least square (NLS) method is presented to improve the performance of the digital FRFT implementation. Finally, an alternate search procedure is proposed to reduce the singular estimations of the NLS method. The simulating examples demonstrate the performance of the proposed algorithms. It has been verified that the computation efficiency and the estimation accuracy have been significantly improved by proposed techniques.
AB - When the fractional Fourier transform (FRFT) is introduced into the weak and high-dynamic global navigation satellite system (GNSS) signal acquisition, the 2-D search cell will be transferred to a 3-D one with respect to the code chip, the Doppler shift, and the Doppler rate. The proper determinations of the code bin and Doppler shift bin in the acquisition process have already been covered in the previous researches. The aim of this paper is to provide an exhaustive analysis of the approach to specify an optimal FRFT order bin, in terms of the Doppler shift rate. The lower and upper bound of FRFT order ranges is determined by the incoming signal dynamics. Then, we propose a precise model to yield an optimal FRFT order bin. Besides, a novel and fast Doppler estimator based on the non-linear least square (NLS) method is presented to improve the performance of the digital FRFT implementation. Finally, an alternate search procedure is proposed to reduce the singular estimations of the NLS method. The simulating examples demonstrate the performance of the proposed algorithms. It has been verified that the computation efficiency and the estimation accuracy have been significantly improved by proposed techniques.
KW - Doppler rate
KW - Global navigation satellite system (GNSS) signal
KW - acquisition
KW - fractional Fourier transform (FRFT) order
KW - linear frequency modulation (LFM)
KW - non-linear least square (NLS)
UR - https://www.scopus.com/pages/publications/85064667061
U2 - 10.1109/ACCESS.2019.2903185
DO - 10.1109/ACCESS.2019.2903185
M3 - Article
AN - SCOPUS:85064667061
SN - 2169-3536
VL - 7
SP - 29575
EP - 29596
JO - IEEE Access
JF - IEEE Access
M1 - 8660391
ER -