Compensated correlation reconstructed technique for unambiguous acquisition of binary offset carrier signals

Songhua Wang, Hailiang Xiong, Juan Tang, Yong Huang, Junyu Shi
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Abstract

With the development of the new generation global navigation satellite system (GNSS), Chinese compass navigation systems also utilize binary offset carrier (BOC) modulation to improve the inter-operability of satellite navigation systems. The main shortcoming of BOC modulation is ambiguous in search of a multi-peaked auto-correlation function (ACF). In this paper, an improved unambiguous acquisition algorithm based on compensated correlation reconstructed technique (CCRT) is proposed for the arbitrary-order BOC, which is a new modulation technique for the next generation satellite navigation and positioning systems. The key technique used in this paper is to generate local reference signals with different shape vectors. By recombining of the piecewise correlation functions of the step-shape coded symbol (SCS), a reconstructed correlation function (RCF) that has only one peak is obtained, and the energy loss is compensated by the ACF. In the proposed algorithm, different shape vectors are employed for different BOC modulation signals. The simulation results demonstrate that the ambiguity problem is completely eliminated in the proposed algorithm. Compared with traditional acquisition methods, the proposed algorithm has an outstanding detection performance. Moreover, the CCRT can be utilized for arbitrary order BOC modulation signals.
二值偏移载波信号无二义采集的补偿相关重构技术
随着新一代全球卫星导航系统(GNSS)的发展,中国的罗盘导航系统也采用二进制偏置载波(BOC)调制来提高卫星导航系统的互操作性。BOC调制的主要缺点是在寻找多峰自相关函数(ACF)时存在歧义。本文提出了一种改进的基于补偿相关重构技术(CCRT)的任意阶BOC无二义捕获算法,这是下一代卫星导航定位系统的一种新的调制技术。本文采用的关键技术是生成具有不同形状矢量的局部参考信号。通过对阶梯形编码符号(SCS)的分段相关函数进行重组,得到一个重构的只有一个峰的相关函数(RCF),并用ACF补偿能量损失。该算法针对不同的BOC调制信号采用了不同的形状向量。仿真结果表明,该算法完全消除了模糊问题。与传统的采集方法相比,该算法具有突出的检测性能。此外,CCRT可用于任意阶BOC调制信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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