...
首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Spaceborne Mesh Reflector Antennas With Complex Weaves: Extended PO/Periodic-MoM Analysis
【24h】

Spaceborne Mesh Reflector Antennas With Complex Weaves: Extended PO/Periodic-MoM Analysis

机译:具有复杂组织的星载网状反射天线:扩展的PO /周期-MoM分析

获取原文
获取原文并翻译 | 示例
           

摘要

Reflector antennas with complex mesh weave patterns are numerically analyzed by using extended physical optics (PO) combined with the periodic method of moments (MoM). The method applies the periodic MoM with Rao–Wilton–Glisson (RWG) basis and testing functions. It calculates the transmission coefficient matrix (${rm T}$-matrix) of the realistic, complex weave pattern of the planar mesh, in order to calculate the modified PO current on the mesh reflector. When analyzed, the planar grid mesh is found to be compatible with the commonly used wire-grid model. The modified PO current on the locally planar mesh is implemented on the curved reflector surface for the diffraction analysis of the mesh reflector antennas. The far-field pattern of the offset parabolic antenna with grid mesh, modelled using periodic MoM, agreed well with those obtained from the wire-grid model. ${rm T}$-matrix calculated from the tabulated ${rm T}$-matrix data using the interpolation method is sufficiently accurate and compares well with the one calculated using the direct method, allowing users to choose one of the ${rm T}$-matrix calculation methods depending on the problem. The analysis of the mesh reflectors with two different complex weave patterns (single Satin and single Atlas at Ka band) is performed to exemplify the application of the extended PO/periodic MoM algorithm. It is shown that differences were observed in cross-polarization discrimination (XPD) for circular polarization operations depending on the weave patterns. This result demonstrates the usefulness of the proposed technique in accurate performance prediction of mesh reflector antennas with complex weave patterns.
机译:通过使用扩展的物理光学系统(PO)与矩周期法(MoM)相结合,对具有复杂网状编织图案的反射天线进行了数值分析。该方法应用基于Rao–Wilton–Glisson(RWG)的定期MoM和测试功能。它计算平面网格的真实,复杂编织图案的透射系数矩阵($ {rm T} $-matrix),以便计算网格反射器上的修正PO电流。分析时,发现平面网格与常用的线栅模型兼容。在曲面反射器表面上实现局部平面网格上的修改PO电流,以对网格反射器天线进行衍射分析。使用周期性MoM建模的带网格的偏置抛物线天线的远场方向图与从线栅模型获得的方向图非常吻合。使用插值方法从列表化的$ {rm T} $矩阵数据中计算出的$ {rm T} $矩阵足够准确,并且与使用直接方法计算出的$ {rm T} $矩阵相当好,允许用户选择$ {rm T} $矩阵的计算方法取决于问题。对具有两种不同的复杂编织图案(Ka波段的单缎和单Atlas)的网格反射器进行了分析,以举例说明扩展PO /定期MoM算法的应用。结果表明,根据编织图案,在圆偏振操作的交叉偏振鉴别(XPD)中观察到差异。该结果证明了所提出的技术在具有复杂编织图案的网状反射器天线的准确性能预测中的有用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号