首页> 外文期刊>Measurement techniques >SYNTHESIS OF AN INTERFERENCE-RESISTANT SPACE-TIME FILTER FOR HIGH-PRECISION MEASUREMENTS OF NAVIGATION PARAMETERS ACCORDING TO THE SIGNALS OF GLOBAL NAVIGATION SATELLITE SYSTEMS
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SYNTHESIS OF AN INTERFERENCE-RESISTANT SPACE-TIME FILTER FOR HIGH-PRECISION MEASUREMENTS OF NAVIGATION PARAMETERS ACCORDING TO THE SIGNALS OF GLOBAL NAVIGATION SATELLITE SYSTEMS

机译:根据全球导航卫星系统的信号,合成用于高精度测量的受干扰空间过滤器

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We study the problems of serviceability of contemporary high-precision terminals of global navigation satellite systems under the conditions of jamming and spoofing interferences. The application of digital antenna arrays with algorithms of space-time signal processing of the signals can be regarded as a solution of the problem of low interference resistance. We describe well-known, most studied, and currently applied algorithms of space-time signal processing. We also formulate the causes that do not enable one to use well-known algorithms in high-precision terminals of satellite systems of global navigation. We propose an algorithm of space-time signal processing based on a space-time filter of finite length with a theoretically justified requirement of Hermitian symmetry for the matrix impulse response. The proposed algorithm guarantees the absence of distortions of signals under any signal and interference conditions. In this case, the impulse response of the space-time filter is computed according to the criterion of optimal suppression of the interference. The characteristics of the proposed space-time filter and other algorithms of space-time signal processing are investigated. For this purpose, we apply the method of mathematical simulation with random search of numerous parameters of signals and interferences (directions to signals, directions to numerous interferences, and to their reflections, remoteness of the reflectors of interferences, the phases of reflections, and the levels of interferences and reflections, etc.). The results of simulations are presented in the form of the distribution functions of the signal-to-interference ratios at the output of the algorithms of space-time signal processing and the distribution functions of the phase and signal-time biases. The obtained dependences substantiate the absence of the phase and signal-time biases in the space-time filter for any signal and interference conditions with interference multipath. It is shown that the space-time filter guarantees a higher interference resistance than the compensating algorithms of space-time signal processing.
机译:我们在干扰和欺骗干扰条件下研究了全球导航卫星系统现代高精度终端的可维护性问题。数字天线阵列与信号处理的时空信号处理算法的应用可以被认为是低抗干扰性问题的解决方案。我们描述了众所周知的,最多研究,目前应用的时空信号处理算法。我们还制定了不会使其在全球导航卫星系统的高精度终端中使用众所周知的算法的原因。我们提出了一种基于有限长度的时空滤波器的时空信号处理算法,其与矩阵脉冲响应的隐密度对称性的理论上是合理的要求。所提出的算法保证在任何信号和干扰条件下没有扭曲信号的扭曲。在这种情况下,根据干扰的最佳抑制的标准来计算空时滤波器的脉冲响应。研究了所提出的时空滤波器和其他时空信号处理的其他算法的特性。为此目的,我们使用随机搜索数学模拟方法,随机搜索信号和干扰的许多参数(对信号,对众多干扰的方向,以及它们的反射,干扰反射器的远程性,反射阶段,以及反射的阶段,以及干扰和反射等水平。)。模拟结果以信号到干扰比的分布函数的形式呈现在时空信号处理算法的输出和相位和信号 - 时间偏置的分布函数的输出中。所获得的依赖性证实了与干扰多径的任何信号和干扰条件的时空滤波器中的相位和信号 - 时偏置的不存在。结果表明,空时滤波器可确保比时空信号处理的补偿算法更高的受扰电阻。

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