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Theoretical evaluation of group delay on pseudorange bias

机译:伪距偏差群体延迟的理论评价

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The phenomenon of pseudorange bias, which is also called S-Curve bias, becomes more obvious with the combined use of multiple satellite systems or navigation satellites with different phases. The different characteristics of the transmitting channel of a navigation satellite result in different distortions of the pseudorange bias in navigation signals; in particular, this issue worsens when the RF channel is not optimized to decrease the pseudorange bias. Therefore, it is interesting to reveal the essential relationship between pseudorange bias and the non-ideal channel and to present an analytic model of the effect of a non-ideal channel on pseudorange bias. Instead of using the numerical method of finding the bias of the zero-crossing point of the discriminator, we provide a theoretical evaluation of the S-Curve bias for the given parameters of channel and signals. Based on the model and presented analyses, we find that second-order group delay plays an important role in the distortion of S-Curve bias and should be avoided in the design of the RF channel for navigation satellites and receivers.
机译:伪静脉偏置的现象,也称为S曲线偏置,随着多种卫星系统或具有不同阶段的导航卫星的组合使用而变得更加明显。导航卫星的发送通道的不同特征导致导航信号中伪距偏差的不同扭曲;特别地,当RF信道未经过优化以减少伪距偏差时,该问题恶化。因此,揭示伪静脉偏差与非理想通道之间的基本关系并呈现了非理想通道对伪距偏差的影响的分析模型。不是使用找到鉴别器的过零点的偏差的数值方法,我们提供了对信道和信号的给定参数的S曲线偏压的理论评价。基于模型和呈现的分析,我们发现二阶组延迟在S曲线偏差的失真中起着重要作用,并且应该在导航卫星和接收器的RF通道的设计中避免。

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