利用全波电磁分析软件HFSS表征波导槽

S.H. Dar, Z. Ahmed, M. bin Ihsan
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引用次数: 7

摘要

本文利用基于有限元的全波电磁分析软件HFSS对ku波段波导WR51宽壁纵向辐射槽和中心倾斜耦合槽的设计曲线进行了研究。这些曲线在波导缝隙阵列的设计中具有一定的应用价值。利用这些曲线设计了两种波导馈电平面缝隙阵列,并在实验测试前利用HFSS对阵列天线的性能进行了仿真。测量的阵列增益图和输入回波损耗与HFSS模拟结果吻合较好。这些阵列的性能验证了设计曲线,也描述了HFSS的功率。在标准波导WR51设计的波导馈电平面槽阵中,由于物理条件的限制,耦合槽不能以λ /2为间隔;这限制了阵列天线的带宽。因此,对于较大带宽的应用,有必要克服这个物理限制。通过在定制波导中设计阵列天线,实现了精确的中心频率和增强的带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of waveguide slots using full wave EM analysis software HFSS
In this paper design curves have been investigated for broad wall longitudinal radiating slot and centered-inclined coupling slot in a Ku-band waveguide WR51 using an FEM based full wave EM analysis software, HFSS. These curves have application in the design of waveguide slot arrays. Two waveguide-fed planar slot arrays have been designed using these curves and HFSS was used to simulate the performances of these array antennas before experimental testing. Measured gain pattern and input return loss of the arrays are in good agreement with those simulated by HFSS. The performance of these arrays validates the design curves and also depicts the power of HFSS. In waveguide-fed planar slot arrays designed in standard waveguide WR51 the coupling slots could not be spaced lambdag/2 apart because of physical constraints; which limits the bandwidth of the array antenna. Therefore, for larger bandwidth applications it is necessary to overcome this physical constraint. Accurate centre frequency and enhanced bandwidth has been achieved by designing an array antenna in a custom waveguide.
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