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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Unambiguous Acquisition/Tracking Technique for High-Order Sine-Phased Binary Offset Carrier Modulated Signal
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Unambiguous Acquisition/Tracking Technique for High-Order Sine-Phased Binary Offset Carrier Modulated Signal

机译:高阶正弦相位二进制偏移载波调制信号的明确采集/跟踪技术

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摘要

The binary offset carrier (BOC) modulated signals have been widely employed in global navigation satellite systems due to its outstanding performance. The BOC signal can share frequency spectrum with traditional BPSK signal, meanwhile provide better code tracking accuracy. However, the multiple peaks auto-correlation function of BOC signal results in the acquisition and tracking ambiguity problem. Several methods have been proposed to remove the ambiguity, but they mainly focus on the low modulation order BOC signal, and not efficient enough for high-order BOC signal. In this paper, we propose an unambiguous acquisition/tracking technique for high-order sine-phased BOC signal. The key of this technique is to design a new local auxiliary signal. With the help of the cross-correlation function between the BOC signal and the local auxiliary signal, we obtain a combined correlation function without major positive side peaks. The proposed acquisition and tracking schemes are presented. The theoretical false alarm and detection performance are given, and the theoretical code tracking error in thermal noise is derived. The performance of the proposed method is analyzed by theory and simulation. Results show that for high-order sine-BOC signal, the proposed technique can remove the ambiguity threat. Compared with the existing methods, our method has a significant improvement in terms of acquisition sensitivity and code tracking performance.
机译:二进制偏移载波(BOC)调制信号由于其出色的性能已被广泛用于全球导航卫星系统中。 BOC信号可以与传统BPSK信号共享频谱,同时提供更好的代码跟踪精度。但是,BOC信号的多峰自相关功能导致捕获和跟踪模糊问题。已经提出了几种消除歧义的方法,但是它们主要集中在低调制阶BOC信号上,而对于高阶BOC信号效率不高。在本文中,我们提出了一种用于高阶正弦相位BOC信号的明确捕获/跟踪技术。该技术的关键是设计一个新的本地辅助信号。借助于BOC信号和本地辅助信号之间的互相关函数,我们获得了一个组合的相关函数,而没有较大的正侧峰。提出了建议的采集和跟踪方案。给出了理论上的虚警和检测性能,推导了热噪声中的理论代码跟踪误差。理论和仿真分析了该方法的性能。结果表明,对于高阶正弦BOC信号,该技术可以消除歧义性威胁。与现有方法相比,我们的方法在获取灵敏度和代码跟踪性能方面有了显着改善。

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