Flat top coverage pattern maintaining via boundary subarray elements thinning

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Ahmed Jameel Abdulqader, Jafar Ramadhan Mohammed, Y. E. Mohammed Ali
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引用次数: 0

Abstract

This paper aims to study the effect of eliminating some elements from the original planar array (OPA) to generate a useful flat-top coverage pattern (FTCP) using a genetic algorithm. The study involves dividing the fully planar array (i.e., OPA) into two regions with an unequal number of elements. The first region includes the elements located in the core (center) of the array, and the remaining elements are the second region, and their location is within the boundary (side) of the array. Only the elements of the first region are included in the optimization process, while the elements of the second region are eliminated in the form of a specific geometric composition without affecting the FTCP generation. Comparing the OPA that N×M elements with the first region (active subarray) elements, it is noted that the number of elements has been reduced from N×M to (N − 2x) × (M − 2y) to reduce the complexity of the system as much as possible without affecting the performance in general. Different boundary subarray shapes are presented in this paper with different numbers of elements. The obtained results showed the effectiveness of the proposed method in generating FTCP close to its counterpart in the OPA.

通过边界子阵列元件减薄保持平顶覆盖模式
本文旨在研究利用遗传算法从原始平面阵列(OPA)中去除一些元素以生成有用的平顶覆盖模式(FTCP)的效果。研究涉及将全平面阵列(即 OPA)划分为两个元素数量不相等的区域。第一个区域包括位于阵列核心(中心)的元素,其余元素为第二个区域,它们位于阵列的边界(侧面)。在优化过程中,只包含第一区域的元素,而第二区域的元素则以特定几何构成的形式被剔除,但不影响 FTCP 的生成。将 N×M 个元素的 OPA 与第一个区域(有源子阵列)的元素进行比较,可以发现元素数量已从 N×M 减少到 (N - 2x) × (M - 2y),以便在不影响总体性能的情况下尽可能降低系统的复杂性。本文介绍了不同的边界子阵列形状和不同的元素数量。结果表明,所提出的方法在生成 FTCP 方面的有效性接近于 OPA 中的对应方法。
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来源期刊
Microwave and Optical Technology Letters
Microwave and Optical Technology Letters 工程技术-工程:电子与电气
CiteScore
3.40
自引率
20.00%
发文量
371
审稿时长
4.3 months
期刊介绍: Microwave and Optical Technology Letters provides quick publication (3 to 6 month turnaround) of the most recent findings and achievements in high frequency technology, from RF to optical spectrum. The journal publishes original short papers and letters on theoretical, applied, and system results in the following areas. - RF, Microwave, and Millimeter Waves - Antennas and Propagation - Submillimeter-Wave and Infrared Technology - Optical Engineering All papers are subject to peer review before publication
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