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Low-Computation GNSS Signal Acquisition Method Based on a Complex Signal Phase in the Presence of Sign Transitions

机译:低计算GNSS信号采集方法基于符号转换存在的复杂信号阶段

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摘要

During signal acquisition in a global navigation satellite system acquisition stage, a method of signal parameters estimation with low computational complexity is needed. However, due to the influence of sign transitions, the correct peak corresponding to the signal parameters is difficult to detect. For the estimation of the code phase of the received signal in the presence of sign transitions with low computational complexity, an acquisition method based on a complex signal phase (AMCSP) is proposed. The problem of estimating the sign transition position and the code phase is transformed into a problem of solving for a complex signal phase. Special block matrixes are constructed to obtain the complex signal phase, and integration processing is utilized to improve the detection probability performance. Based on an analysis of undesirable cases, a final code phase estimation process is proposed. Furthermore, expressions for the detection performance and computational complexity of AMCSP are derived. Simulation results demonstrate that the computational cost of AMCSP is much lower than that of a fast Fourier transform-based method.
机译:在全局导航卫星系统获取阶段的信号采集期间,需要一种具有低计算复杂度的信号参数估计方法。然而,由于符号转换的影响,难以检测对应于信号参数的正确峰值。为了在存在低计算复杂度的符号转换的情况下估计接收信号的代码阶段,提出了一种基于复杂信号相位(AMCSP)的获取方法。估计符号转换位置和码片的问题变换为求解复杂信号阶段的问题。构造特殊块矩阵以获得复杂信号相位,并且利用集成处理来提高检测概率性能。基于对不良情况的分析,提出了最终的代码阶段估计过程。此外,导出了用于AMCSP的检测性能和计算复杂性的表达。仿真结果表明,AMCSP的计算成本远低于基于快速傅立叶变换的方法的计算成本。

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