Design of a New Balanced Side Slotted Vivaldi Antenna with Director using Genetic Algorithm

Xiaoyan Zhang, Yuxu Hu, Aiyun Zhan
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Abstract

Generally, side slotting and directional techniques can improve the performance of a conventional Vivaldi antenna (CVA), but the optimal structure and distribution of slots and directors may be irregular or even complex, requiring significant manual effort, thus limiting the design possibilities. In this paper, a genetic algorithm (GA) is introduced to assist in designing and optimizing a new type of balanced side slotted Vivaldi antenna with director (SSVAD). The methods of artificial intelligence make the process of searching for the optimal structure of such a multi-objective and multi-dimensional problem simpler and more diverse. The GA-generated SSVAD antenna consists of a CVA and 34 slots with varying lengths, as well as 5 metal strips. It has a compact size of 38.2×49×0.8 mm3 (or 0.32λL×0.41λL×0.007λL, where λL is the lowest operating frequency of 2.48 GHz). The measured results show that the antenna has a peak gain >0 dBi over 2.48-10.88 GHz and >5 dBi over 4.6-10.88 GHz with S11<-10 dB standard, and exhibits directional characteristics at most of the operating frequencies. Since the measured results are basically consistent with the simulation ones, the effectiveness of the designed scheme has been proven.
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利用遗传算法设计带导向器的新型平衡侧开槽维瓦尔第天线
一般来说,侧开槽和定向技术可以提高传统维瓦尔第天线(CVA)的性能,但槽和导向器的最佳结构和分布可能不规则甚至复杂,需要大量人工操作,从而限制了设计的可能性。本文引入遗传算法(GA)来辅助设计和优化新型带导向的平衡侧开槽维瓦尔第天线(SSVAD)。人工智能方法使这种多目标、多维度问题的最佳结构搜索过程变得更加简单和多样化。由 GA 生成的 SSVAD 天线由一个 CVA 和 34 个不同长度的槽以及 5 条金属带组成。它的尺寸为 38.2×49×0.8 mm3(或 0.32λL×0.41λL×0.007λL,其中 λL 为 2.48 GHz 的最低工作频率)。测量结果表明,该天线在 2.48-10.88 GHz 频率范围内的峰值增益大于 0 dBi,在 4.6-10.88 GHz 频率范围内的峰值增益大于 5 dBi,S11<-10 dB 标准,并且在大多数工作频率下都表现出定向特性。由于测量结果与模拟结果基本一致,因此证明了设计方案的有效性。
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