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A Novel Parameter Estimation Scheme for Noncooperative Binary Offset Carrier Modulated Signals

机译:非合作二进制偏移载波调制信号的新参数估计方案

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The binary offset carrier (BOC) modulation has become one of the main global navigation satellite system (GNSS) modulations due to its strong anti-interference capability and high ranging accuracy. Noncooperative BOC parameter estimation is beneficial to signal acquisition, tracking, and the evaluation of mutual interference among different GNSSs. This paper proposes a novel parameter estimation scheme to improve the parameter estimation performance of BOC modulated signals under a low signal-to-noise ratio (SNR) scenario. The scheme is divided into two parts to realize the estimation of the carrier frequency, subcarrier frequency, and pseudo code rate of BOC modulated signals. The first part uses the spectral center method to estimate the carrier frequency, and the second part uses an improved peak-to-peak distance method to estimate the subcarrier frequency and pseudo code rate. Simulation results show that the spectral center method for carrier frequency estimation is more stable and easier to implement than the traditional square frequency method. Meanwhile, the improved peak-to-peak distance method for the estimation of subcarrier frequency and pseudo code rate has higher accuracy than the traditional peak-to-peak distance method under low SNR.
机译:由于其强大的抗干扰能力和高测距精度,二进制偏移载波(BOC)调制已成为主要的全球导航卫星系统(GNSS)调制之一。非合作BOC参数估计有助于信号采集,跟踪以及评估不同GNSS之间的相互干扰。本文提出了一种新的参数估计方案,以提高在低信噪比情况下BOC调制信号的参数估计性能。该方案分为两个部分,以实现对BOC调制信号的载波频率,子载波频率和伪码率的估计。第一部分使用频谱中心方法估计载波频率,第二部分使用改进的峰峰值距离方法估计子载波频率和伪码率。仿真结果表明,频谱中心法用于载波频率估计比传统的方频方法更稳定,更易于实现。同时,在低信噪比下,用于估计子载波频率和伪码率的改进的峰峰距离方法比传统的峰峰距离方法具有更高的精度。

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