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Phased-array radiator reflection coefficient extraction from computer waveguide simulator data when grating lobes are present

机译:存在光栅瓣时从计算机波导模拟器数据中提取相控阵辐射器反射系数

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摘要

Commercially available finite-element software that solves Maxwell's equations for arbitrary three-dimensional bounded structures has enabled phase-array radiator designers to perform waveguide simulator modeling of phased-array radiating elements on the computer very efficiently. Published work on waveguide simulator design has concentrated on array performance in the absence of grating lobes, a requirement for many radar applications. For such simulators, the reflection coefficient of each propagating mode at the waveguide simulator port gives the radiator reflection coefficient at a discrete scan angle. However, the design of limited scan arrays can lead to selection of an array element spacing that allows grating lobes in real space. When a waveguide simulator is modeled on the computer, and a grating lobe is present, the two waveguide modes representing the main lobe and the grating lobe will propagate in the waveguide simulator and they will be coupled together. The simulator port-reflection coefficient of either mode is not the true reflection coefficient seen by the radiating element. We describe a method for extracting the reflection coefficient of the radiating element from the waveguide simulator data when one or more grating lobes are present.
机译:解决了麦克斯韦方程的任意三维有界结构的市售有限元软件使相控阵辐射器设计人员能够非常高效地在计算机上执行相控阵辐射元件的波导模拟器建模。已发布的关于波导模拟器设计的工作集中在没有光栅波瓣的阵列性能上,这是许多雷达应用的要求。对于这样的模拟器,波导模拟器端口处每个传播模式的反射系数给出了离散扫描角度下的辐射器反射系数。但是,有限扫描阵列的设计可能会导致选择阵列元素间距,从而允许在实际空间中形成光栅瓣。当在计算机上对波导模拟器进行建模并且存在光栅波瓣时,代表主波瓣和光栅波瓣的两个波导模式将在波导模拟器中传播,并且它们将耦合在一起。任一模式的模拟器端口反射系数都不是辐射元件看到的真实反射系数。我们描述了一种在存在一个或多个光栅波瓣时从波导模拟器数据中提取辐射元件的反射系数的方法。

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