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S-Curve Shaping: A New Method for Optimum Discriminator Based Code Multipath Mitigation

机译:S曲线整形:基于最佳鉴别器的码多径缓解的新方法

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The paper characterizes the optimum code multipath mitigation in a GNSS receiver which can be achieved by a linear combination of several correlators or equivalently by correlating the incoming signal with a code-tracking-reference-function. After a review of currently used code multipath mitigation techniques, a new technique is developed to determine positions and weights of the correlators (or the shape of the code-tracking-reference-function) in order to achieve the best possible multipath mitigation performance within the chosen framework. It is based on the definition of an 'optimum' S-curve. A non-coherent code discriminator is formed by dividing the coherent discriminator by the punctual correlator. The technique is applied to BPSK(1) and BOC(1,1) signals for infinite, 16 MHz and 8 MHz bandwidth. Outside its linear region, the S-curve is slightly offset to avoid false stable tracking points as they occur for BOC signals. It is shown that within this approach high-bandwidth BPSK and BOC signals achieve virtually identically multipath envelopes. The resulting discriminator is implemented and tested in a software receiver.
机译:本文表征了GNSS接收机中的最佳码多径缓解,其可以通过几个相关器的线性组合来实现,也可以通过将输入信号与代码跟踪引用功能相关联来实现。在对当前使用的代码多径缓解技术进行审查后,开发了一种新技术以确定相关器的位置和权重(或代码跟踪 - 参考功能的形状),以便在此内实现最佳的多径缓解性能选择框架。它基于“最佳”曲线的定义。通过分红相关器除以相干鉴别器来形成非相干码鉴别器。该技术应用于无限,16MHz和8 MHz带宽的BPSK(1)和BOC(1,1)信号。在其线性区域之外,S曲线略微偏移,以避免由于BOC信号而发生的假稳定跟踪点。结果表明,在该方法中,高带宽BPSK和BOC信号实现几乎相同的多径信封。在软件接收器中实现和测试所得到的鉴别器。

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