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A UTD ray description for the collective fields radiated by large antenna phased arrays on a smooth convex surface.

机译:UTD射线描述了光滑凸面上的大型天线相控阵辐射的集合场。

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摘要

A collective uniform geometrical theory of diffraction (UTD) ray solution is developed for describing the fields radiated by large array apertures that are conformal to a doubly curved, smooth convex PEC surface. Such conformal array apertures may either be physical array apertures formed by simple antenna elements located directly on a convex PEC surface, or be equivalent apertures defined by more complex flush mounted radome-covered antenna arrays whose elements are slightly recessed in a cavity structure just below the skin line of a convex PEC boundary. The present UTD solution describes all at once the radiation from the whole array aperture in terms of just a few rays which are launched from specific critical points in the interior and on the array aperture boundary. Hence, it is relatively highly efficient as compared to the conventional element-by-element field summation approach. More importantly, it provides useful physical insights into the array radiation mechanisms. In most practical applications, the large array is situated conformally on an even larger platform, e.g. an aircraft, a spacecraft, or a naval ship, etc. In these realistic cases, the very large platform part can be modeled efficiently by the high-frequency UTD method, while the large array part can be modeled locally by numerical methods (FEM, FE-BI, etc.). The coupling of the array fields to the external platform is then achieved by the present collective UTD solution which launches the collective ray fields from the array aperture or window to then interact with the rest of the platform. Such a hybrid numerical-collective UTD method provides a useful, tractable and relatively efficient analysis of large arrays on a very large platform. Numerical results are presented to demonstrate the accuracy and efficiency of the present collective UTD ray solution for describing the fields radiated by large conformal antenna phased arrays on a smooth convex PEC surface.
机译:提出了一种统一的统一衍射几何理论(UTD)射线解决方案,用于描述由大阵列孔辐射的场,这些大孔与双弯曲,光滑的凸PEC表面共形。这种共形阵列孔可以是直接位于凸形PEC表面上的简单天线元件形成的物理阵列孔,也可以是由更复杂的齐平安装的天线罩覆盖的天线阵列所定义的等效孔,其天线元件稍微凹陷在正好位于天线下方的空腔结构中。凸PEC边界的蒙皮线。当前的UTD解决方案仅用从内部和阵列孔径边界上的特定临界点发射的几条射线就一次描述了整个阵列孔径的辐射。因此,与常规逐个元素的字段求和方法相比,它的效率相对较高。更重要的是,它为阵列辐射机制提供了有用的物理见解。在大多数实际应用中,大型阵列保形地位于甚至更大的平台上,例如。在这些实际情况下,可以通过高频UTD方法对大型平台部件进行有效建模,而对大型阵列部件可以通过数值方法(FEM, FE-BI等)。然后,通过本发明的集合UTD解决方案实现阵列场到外部平台的耦合,该解决方案从阵列孔或窗口发射集合射线场,然后与平台的其余部分相互作用。这种混合数字-集合UTD方法可在非常大的平台上提供有用,易处理且相对高效的大型数组分析。数值结果表明了当前统一的UTD射线解决方案的准确性和效率,该解决方案用于描述大型凸形天线相控阵在光滑的凸PEC表面上辐射的场。

著录项

  • 作者

    Janpugdee, Panuwat.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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