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Calculation and Analyze of Reradiation Interference from Shared Tower

机译:共用塔的勘探干扰计算与分析

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The new antenna makes the scattering field of the shared tower more complicated, and the discontinuous scatterers have a coupling effect under multiple excitation sources, which leads to changes in the boundary conditions used to derive the electric field integral equation in the traditional transmission line passive interference solving algorithm. For this reason, based on the generation mechanism of the passive interference scattering field of the transmission line, this paper considers the coupling effect between discontinuous electromagnetic scatterers, and proposes an improved method for solving the passive interference level of the shared tower based on the LE-PO algorithm. Based on the reciprocity theorem and the principle of equivalence, the boundary conditions after the second-order coupling scattering of the shared iron tower scatterer are derived, and the equivalent sources of the scatterers in the mutual coupling background are obtained. The source performs integral solution to obtain the scattered field of the shared iron tower, and finally realizes the accurate solution of the passive interference level. The experimental verification of a single antenna and a single iron column in an anechoic chamber shows that the error of the passive interference solution method considering the coupling is 2.62%, while the error of the traditional LE-PO algorithm is 9.85%.
机译:新天线使共用塔的散射场更加复杂,并且不连续的散射器在多个激励源下具有耦合效果,这导致用于在传统传输线被无源干扰中导出电场整体方程的边界条件的变化解决算法。因此,基于传输线的无源干扰散射场的产生机制,本文考虑了不连续电磁散射体之间的耦合效果,并提出了一种基于LE求解共用塔的被动干扰水平的改进​​方法-PO算法。基于互易性定理和等价原理,得出共用铁塔散射体的二阶耦合散射之后的边界条件,获得了相互耦合背景中的散射体的等效源。源执行整体解决方案以获得共享铁塔的散射场,并且最终实现被动干扰水平的准确解决方案。一个天线和一个天线和一个铁柱的实验验证在AneChice室中表明,考虑耦合的被动干扰求解方法的误差为2.62%,而传统的LE-PO算法的误差为9.85%。

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