利用平铺子阵块合成非均匀激励天线阵列

Q4 Engineering
Jafar Ramadhan Mohammed
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引用次数: 0

摘要

传统的非均匀激励天线阵列是通过独立确定每个单元的激励幅度和相位来合成的。这种方法被认为是最昂贵和最复杂的设计方法。本文利用耕作技术合成非均匀激励天线阵列。要应用这种技术,首先将数组元素划分为不同的子数组形状,例如称为tile的矩形或正方形。使用矩形瓦块代替单元素结构大大简化了阵列设计过程,降低了阵列的复杂性。接下来,通过使用具有不同形状和大小的瓦片的水平和垂直方向及其更大的整数展开,阐述并解决了由矩形瓦片块组成的子阵列的合成问题。平铺设计的第三种方法是前两种平铺架构的混合。采用遗传算法设计这种平铺阵列,提供最佳的旁瓣电平、波束宽度、指向性和锥度效率。仿真结果验证了所提平铺阵列的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesizing Non-Uniformly Excited Antenna Arrays Using Tiled Subarray Blocks
Conventionally, non-uniformly excited antenna arrays are synthesized by independently determining the excitation amplitude and phase of each single element. Such an approach is considered to be the most expensive and complex design method available. In this paper, the tilling technique is harnessed to synthesize non-uniformly excited antenna arrays. To apply this technique, the array elements are first divided into different subarray shapes, such as rectangles or squares known as tiles. The use of rectangular tile blocks instead of a single element architecture greatly simplifies the array design process and reduces array complexity. Next, the problem concerned with synthesizing sub-arrays comprising rectangular tile blocks is formulated and solved by using horizontal and vertical orientations of tiles having different shapes and sizes, and their larger integer expansions. The third approach to tiled design is a mixture of both previous tile architectures. A genetic algorithm is used to design such tiled arrays offering optimum sidelobe levels, beam width, directivity and taper efficiency. Simulation results demonstrated the effectiveness of the proposed tiled arrays.
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来源期刊
Journal of Telecommunications and Information Technology
Journal of Telecommunications and Information Technology Engineering-Electrical and Electronic Engineering
CiteScore
1.20
自引率
0.00%
发文量
34
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