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Polarization Direction Finding Method of Interfering Radio Emission Sources

机译:干扰无线电辐射源的极化方向寻找方法

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Rapid growth of radio emission sources (RES) leads to the interference of signals from various transceivers and thus complicates its positioning based on direction finding (DF). Traditional DF use structural-statistical redundancy to resolve multi-signal and multipath situations, which makes impossible to implement it in compact direction finders. The aim of current work is to investigate possibilities of polarization DF accounting interference conditions. It is proposed to use frequency and phase differences of received rays in the interference mixture of signals in tri-orthogonal antenna system (TOAS). The solution to polarization DF task of RES during interference utilize methods of search for normals to planes that arc envelopes from a family of curves, which use the resultant field, induced in TOAS. The novelty of presented solution is in the realization of the idea that in the case of RES interference with frequency or phase differences in TOAS, the resulting field vector forms three-dimensional shape, which contains spatial parameters of the rays. Contribution of current investigation validates the use of relatively simple DF techniques in a complex interference environment, both for several sources and separation of rays from one source.
机译:无线电发射源(RES)的快速增长导致来自各种收发器的信号受到干扰,从而使基于测向(DF)的定位变得复杂。传统的DF使用结构统计冗余来解决多信号和多路径情况,这使得无法在紧凑的测向仪中实现它。当前工作的目的是研究极化DF解决干扰条件的可能性。在三正交天线系统(TOAS)中,建议在信号的干扰混合中使用接收射线的频率和相位差。 RES在干扰期间对极化DF任务的解决方案利用的方法是,搜索从一系列曲线中弧出包络的平面的法线,这些曲线使用在TOAS中感应出的合成场。提出的解决方案的新颖性在于实现以下想法:在RES干扰TOAS中的频率或相位差的情况下,所得场矢量形成三维形状,其中包含射线的空间参数。当前研究的成果证实了在复杂的干扰环境中使用相对简单的DF技术,既适用于多个光源,也适用于将光线与一个光源分离。

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