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Numerical modeling of scan behavior of finite planar arrays of wideband U-slot and rectangular microstrip patch elements

机译:宽带U型槽和矩形微带贴片单元有限平面阵列扫描行为的数值模拟

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Excitation of surface waves in finite microstrip antenna arrays causes occurrence of blind spots at certain scan angles, resulting in reduction of scan bandwidth. The primary aim of this investigation is a comparative modeling of scan element gain patterns in planar array architectures with coaxially-fed wideband rectangular U-slot and rectangular patch elements. An U-slot and a rectangular patch with an offset probe, each having the same radiating patch area, were designed, and simulated via the commercially software IE3D, to have 10 dB return loss bandwidths of 26% and 9%, respectively, on a substrate with /spl epsiv//sub r/ = 2.55 and thickness d = 0.762 cms. Numerical results for the VSWR vs. frequency sweep and scan (active) element gain patterns vs. elevation angle /spl theta/ in the principal pattern planes (/spl Phi/ = 0/spl deg/ and 90/spl deg/) at selected element locations in a 5 /spl times/ 5 rectangular grid planar array, are included. These results show that the isolated, wideband U-slot element, in an array environment has a surface wave excited blind spot in the (/spl Phi/ = 0/spl deg/) or E-plane, which is demonstrably more prominent than the rectangular patch array.
机译:在有限的微带天线阵列中激发表面波会导致在某些扫描角度处出现盲点,从而导致扫描带宽减小。这项研究的主要目的是对同轴馈入宽带矩形U形槽和矩形贴片元件的平面阵列架构中的扫描元件增益模式进行比较建模。设计并通过商业软件IE3D对U形槽和带有偏移探头的矩形面片(每个面片具有相同的辐射面片面积)进行了仿真,并模拟了它们的10 dB回波损耗带宽,分别为26%和9%。基板的/ spl epsiv // sub r / = 2.55,厚度d = 0.762 cms。在选定模式下,VSWR与频率扫描和扫描(有源)元件增益模式与仰角/ spl theta /的数值结果(在主模式平面(/ spl Phi / = 0 / spl deg /和90 / spl deg /)中)包括5个/ spl次/ 5个矩形网格平面阵列中的元素位置。这些结果表明,在阵列环境中,隔离的宽带U形槽元件在(/ spl Phi / = 0 / spl deg /)或E平面中具有表面波激发的盲点,这显然比E-plane更为突出。矩形补丁数组。

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