Design, optimization and simulation of non-resonant slotted waveguide antenna for X-band

Tejaswi Karadi, K. Sreelakshmi, Amlesh Kumar Singh
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Abstract

The main aim of the project is to design the antenna which provide maximum gain and coverage for military applications. This paper presents the design, optimization and simulation of non-resonant slotted waveguide antenna with optimized side lobe levels in X-band region. It is very compact and easy to handle. The proposed antenna has simple feed system to avoid the complexity in case of resonant or standing wave slotted waveguide antenna. A single travelling or non- resonant antenna consists of 64 slots or radiating elements. Instead of using many small antennas, a single antenna with many slots is used. Taylor’s aperture distribution is used to achieve an ultralow side lobe level (SLL) of -25dB. Based on previous works carried on slotted waveguide antenna it is seen that by choosing the proper place on waveguide and by choosing specified shape, size, orientation and position of slots on the waveguide, the radiation and realized gains can be varied. By keeping this as the main agenda we have designed antenna by starting with simple 1 slot waveguide to till 64 slot waveguide and considered 5 different cases to obtain the optimized design and results. Results for all the 5 different cases considering a simple 1 slot waveguide to till 64 slots waveguide are clearly presented in this paper and observed to reach an optimized level.
x波段非谐振波导天线的设计、优化与仿真
该项目的主要目的是设计为军事应用提供最大增益和覆盖范围的天线。本文介绍了x波段旁瓣电平优化的非谐振波导天线的设计、优化和仿真。它非常小巧,易于操作。该天线具有简单的馈电系统,避免了谐振型或驻波型狭缝波导天线的复杂性。单个移动或非谐振天线由64个槽或辐射元件组成。它不是使用许多小天线,而是使用带有许多插槽的单个天线。泰勒孔径分布用于实现-25dB的超低旁瓣电平(SLL)。根据以往对开槽波导天线的研究可知,在波导上选择合适的位置,在波导上选择特定的形状、尺寸、槽的方向和位置,可以改变天线的辐射和实现增益。通过保持这一主要议程,我们设计了从简单的1槽波导到64槽波导的天线,并考虑了5种不同的情况,以获得优化的设计和结果。本文清楚地给出了从简单的1槽波导到64槽波导的所有5种不同情况下的结果,并观察到达到了优化水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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