牛雪, 聂在平, 阙肖峰, 何十全. 分层等离子体包覆飞行器天线性能一体化分析[J]. 电波科学学报, 2015, 30(4): 621-628. doi: 10.13443/j.cjors.2014091001
      引用本文: 牛雪, 聂在平, 阙肖峰, 何十全. 分层等离子体包覆飞行器天线性能一体化分析[J]. 电波科学学报, 2015, 30(4): 621-628. doi: 10.13443/j.cjors.2014091001
      NIU Xue, NIE Zaiping, QUE Xiaofeng, HE Shiquan. Integrated analysis for the performance of vehicle antennas covered by stratified plasma[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2015, 30(4): 621-628. doi: 10.13443/j.cjors.2014091001
      Citation: NIU Xue, NIE Zaiping, QUE Xiaofeng, HE Shiquan. Integrated analysis for the performance of vehicle antennas covered by stratified plasma[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2015, 30(4): 621-628. doi: 10.13443/j.cjors.2014091001

      分层等离子体包覆飞行器天线性能一体化分析

      Integrated analysis for the performance of vehicle antennas covered by stratified plasma

      • 摘要: 提出了一种适用于分层等离子体鞘套、高超声速飞行器以及天线一体化求解的修正多层薄介质片(Multi-Layer Thin Dielectric Sheet, ML-TDS)方法.该方法只需在相关参考面上进行面剖分,避免了对覆盖于机体表面等离子体的海量体剖分,从而大幅降低了待求未知量和计算量.详细介绍了修正ML-TDS方法, 通过与体面积分方程方法和面积分方程方法的对比展示了其在分析分层等离子体鞘套覆盖下天线辐射特性问题中的优势.基于高速飞行器表面等离子体鞘套和天线间的互耦模型,分别计算了飞行器上单天线和双天线在等离子体鞘套和飞行器平台影响下的辐射特性.该方法可对等离子体鞘套包覆的飞行器和天线实现一体化的建模和计算,数值结果准确,计算复杂度低,是研究分层等离子体鞘套电磁效应较为便捷的数值分析工具.

         

        Abstract: In this paper the modified multi-layer thin dielectric sheet (ML-TDS) method is proposed to solve integrated problems of the stratified plasma sheath, hypersonic vehicles, and antennas. Removing the requirements of volume meshes for a great deal of plasma sheath surrounding the vehicle, it only needs the surface meshes of several reference surfaces. As a result, both the number of unknowns and the computational complexity are reduced significantly. Firstly, the modified ML-TDS method was introduced in detail. Compared to the volume-surface integral equation method and the surface integral equation method, the modified ML-TDS method showed its superiority in analyzing the radiation pattern of the antenna covered by the stratified plasma sheath. Then the coupling model between the plasma sheath and the antenna was considered. Based on the model, single antenna and double antennas on a vehicle covered by the stratified plasma sheath were analyzed, respectively. As an integrated method, the modified ML-TDS method has a high accuracy and a low computational complexity. It is a convenient numerical analysis tool to study the electromagnetic characteristic of the stratified plasma sheath.

         

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