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Evolution of conformal antenna design with the aid of probability improved crow search algorithm

机译:共形天线设计的进化与援助概率的乌鸦搜索算法的改进

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Purpose The issues of radiating sources in the existence of smooth convex matters by such objects are of huge significance in the modeling of antennas on structures. Conformal antenna arrays are necessary when an antenna has to match to certain platforms. A fundamental problem in the design is that the possible surfaces for a conformal antenna are infinite in number. Furthermore, if there is no symmetry, each element will see a different environment, and this complicates the mathematics. As a consequence, the element factor cannot be factored out from the array factor. Design/methodology/approach This paper intends to enhance the design of the conformal antenna. Here, the main objective of this task is to maximize the antenna gain and directivity from the first-side lobe and other side-lobes in the two way radiation pattern. Thus the adopted model is designed as a multiobjective concern. In order to attain this multiobjective function, both the element spacing and the radius of each antenna element should be optimized based on the probability of the Crow Search Algorithm (CSA). Thus the proposed method is named Probability Improved CSA (PI-CSA). Here, the First Null Beam Width (FNBW) and Side-Lobe Level (SLL) are minimized. Moreover, the adopted scheme is compared with conventional algorithms, and the results are attained. Findings From the analysis, the gain of the presented PI-CSA scheme in terms of best performance was 52.68% superior to ABC, 25.11% superior to PSO, 13.38% superior to FF and 3.21% superior to CS algorithms. Moreover, the mean performance of the adopted model was 62.94% better than ABC, 13.06% better than PSO, 24.34% better than FF and 10.05% better than CS algorithms. By maximizing the gain and directivity, FNBW and SLL were decreased. Thus, the optimal design of the conformal antenna has been attained by the proposed PI-CSA algorithm in an effective way. Originality/value This paper presents a technique for enhancing the design of the conformal antenna using the PI-CSA algorithm. This is the first work that utilizes PI-CSA-based optimization for improving the design of the conformal antenna.
机译:目的的辐射来源的问题光滑凸等重要的存在对象是极为重要的建模天线的结构。阵列天线必须匹配是很有必要的特定的平台。设计是可能的表面共形天线的数量是无限的。此外,如果没有对称元素将会看到一个不同的环境,这个复杂的数学。因此,元素因素不能提出从数组中因素。设计/方法/方法本文打算提高共形天线的设计。在这里,这个任务的主要目的是最大化的天线增益和方向性谁先叶和其他副瓣双向辐射模式。被设计为一个多目标问题。实现多目标函数,元素间距和每个天线的半径元素应该是优化的基础上乌鸦的概率搜索算法(CSA)。因此该方法被命名为概率改善CSA (PI-CSA)。宽度(FNBW)和副瓣电平(SLL)最小化。与传统算法相比,结果获得。的获得了PI-CSA计划方面最佳性能优于美国广播公司(ABC) 52.68%,优于PSO 25.11%,优于FF和13.38%3.21%优于CS算法。意思是采用模型的性能为62.94%比算法比ABC, 13.06%, 24.34%比FF和10.05%比CS算法。方向性,FNBW SLL减少。共形天线的优化设计被提议的PI-CSA实现算法一个有效的方法。提出了一种技术提高的设计共形天线使用PI-CSA算法。这是第一次工作,利用PI-CSA-based优化改善的设计共形天线。

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