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Codes Cross-Correlation Impact on S-curve Bias and Data-Pilot Code Pairs Optimization for CBOC Signals

机译:代码互相关对S曲线偏差的影响以及CBOC信号的数据导频代码对优化

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摘要

The aim of this paper is to analyze the impact of spreading codes cross-correlation on code tracking performance, and to optimize the data-pilot code pairs of Galileo E1 Open Service (OS) Composite Binary Offset Carrier (CBOC) signals. The distortion of the discriminator function (i.e., S-curve), due to data and pilot spreading codes cross-correlation properties, is evaluated when only the data or pilot components of CBOC signals are tracked, considering the features of the modulation schemes. Analyses show that the S-curve bias also depends on the receiver configuration (e.g., the tracking algorithm and correlator spacing). In this paper, two methods are proposed to optimize the data-pilot code pairs of Galileo E1 OS. The optimization goal is to obtain minimum average S-curve biases when tracking only the pilot components of CBOC signals for the specific correlator spacing. The S-curve biases after optimization processes are analyzed and compared with the un-optimized results. It is shown that the optimized data-pilot code pairs could significantly mitigate the intra-channel (i.e., data and pilot) codes cross-correlation,and then improve the code tracking performance of CBOC signals.
机译:本文的目的是分析扩频码互相关对码跟踪性能的影响,并优化Galileo E1开放式服务(OS)复合二进制偏移载波(CBOC)信号的数据引导码对。当仅跟踪CBOC信号的数据或导频分量时,考虑到调制方案的特征,将评估由于数据和导频扩展码互相关特性而导致的鉴频器功能(即S曲线)的失真。分析表明,S曲线偏差还取决于接收机的配置(例如,跟踪算法和相关器间隔)。本文提出了两种方法来优化Galileo E1 OS的数据引导代码对。优化目标是在仅跟踪CBOC信号的导频分量以获得特定相关器间隔时,获得最小的平均S曲线偏差。分析优化过程后的S曲线偏差,并将其与未优化的结果进行比较。结果表明,优化的数据导频码对可以显着缓解信道内(数据和导频)码的互相关,从而提高CBOC信号的码跟踪性能。

著录项

  • 作者

    Yang Z.; Huang Z.; Geng S.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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