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An Improved Timing Synchronization Scheme for BOC Signals

机译:BOC信号的改进定时同步方案

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Binary offset carrier (BOC) signal synchronization is one of the most important steps to recover the transmitted information in a global navigation satellite system (GNSS) such as Galileo and global positioning system (GPS). Generally, BOC signal synchronization is achieved based on the correlation between the received and locally generated BOC signals. Thus, the multiple side-peaks in BOC autocorrelation are one of the main error sources in synchronizing BOC signals. Recently, a novel correlation function with reduced side-peaks was proposed for BOC signal synchronization by Julien [8]; however, Julien's correlation function not only still has the side-peaks, but also is only applicable to sine phased BOC(n, n), where n is the ratio of the pseudo random noise (PRN) code rate to 1.023MHz. In this paper, we propose a new correlation function for BOC signal synchronization, which does not have any side-peaks and is applicable to general types of BOC signals, sine/cosine phased BOC(kn, n), where k is the ratio of a PRN chip duration to the period of a square wave sub-carrier used in BOC modulation. In addition, an efficient correlator structure is presented for generating the proposed correlation Junction.
机译:二进制偏移载波(BOC)信号同步是在全球导航卫星系统(GNSS)中恢复诸如伽利略和全球定位系统(GPS)中的传输信息的最重要步骤之一。通常,基于接收和本地生成的BOC信号之间的相关性来实现BOC信号同步。因此,BOC自相关的多个侧峰是同步BOC信号中的主要误差源之一。最近,提出了一种具有减少峰值的新型相关函数,用于Julien的Boc信号同步[8];然而,Julien的相关函数不仅具有侧峰,而且仅适用于正弦相位的BOC(N,N),其中N是伪随机噪声(PRN)码率与1.023MHz的比率。在本文中,我们提出了BOC信号同步的新相关函数,其没有任何侧峰,并且适用于BOC信号的一般类型,正弦/余弦相控使BOC(KN,N),其中K是比率PRN芯片持续时间到BOC调制中使用的方波子载波的时段。另外,提出了一种有效的相关器结构,用于产生所提出的相关结。

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