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Analysis Methods of Linear Distortion Characteristics for GNSS Signals

机译:用于GNSS信号的线性失真特性的分析方法

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摘要

The non-ideality of payload channel can cause the navigation signal distortions, which would lead to the performance degradation. The distortions due to non-ideal channel fall into the linear and nonlinear signal distortions. The linear distortion is usually introduced by filter and triplexer, and non-linear distortion mainly depends on high power amplifier. Analyzing the non-ideal characteristics of channel is helpful to optimize the navigation payload design and improve the navigation signal quality. This paper only focuses on the analysis of linear distortion characteristics. The linear distortion characteristics include the amplitude-frequency characteristic and group delay characteristic. The non-ideality of amplitude-frequency characteristic can result in the distortion of signal frequency spectrum and power loss. The non-ideality of group delay characteristic can lead to the distortion of correlation function, and then introduce ranging bias error. This paper firstly presents the analysis methods from the view of correlation-domain and time-domain. The correlation-domain method exploits the real correlation function and ideal correlation function to obtain directly linear distortion characteristics. The time-domain method needs to recover the baseband waveform with the periodicity of short code signal component, and generate approximately the linear distortion characteristics using a FIR filter. Then, taking BPSK signals as an example, the performance of above two methods is studied by simulation.
机译:有效负载信道的非理想性可能导致导航信号失真,这将导致性能下降。由于非理想通道导致的扭曲落入线性和非线性信号畸变。线性失真通常由过滤器和三重交通器引入,非线性失真主要取决于高功率放大器。分析通道的非理想特征有助于优化导航有效载荷设计并提高导航信号质量。本文仅侧重于分析线性失真特性。线性失真特性包括幅度频率特性和组延迟特性。幅度频率特性的非理想性可能导致信号频谱和功率损耗的失真。组延迟特性的非理想性可能导致相关函数的失真,然后引入测距偏差误差。本文首先从相关域和时域中介绍了分析方法。相关域方法利用实际相关函数和理想的相关函数来获得直接线性失真特性。时域方法需要恢复具有短代码信号分量的周期性的基带波形,并使用FIR滤波器产生大致线性失真特性。然后,采用BPSK信号作为示例,通过模拟研究了上述两种方法的性能。

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