Conformal Patch Antenna Arrays Design for Onboard Ship Deployment Using Genetic Algorithms

S. Mitilineos, S. Symeonidis, Ioannis B. Mpatsis, D. Iliopoulos, G. S. Kliros, S. Savaidis, N. Stathopoulos
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引用次数: 6

Abstract

Conformal antennas and antenna arrays (arrays) have become necessary for vehicular communications where a high degree of aerodynamic drag reduction is needed, like in avionics and ships. However, the necessity to conform to a predefined shape (e.g., of an aircraft’s nose) directly affects antenna performance since it imposes strict constraints to the antenna array’s shape, element spacing, relative signal phase, and so forth. Thereupon, it is necessary to investigate counterintuitive and arbitrary antenna shapes in order to compensate for these constraints. Since there does not exist any available theoretical frame for designing and developing arbitrary-shape antennas in a straightforward manner, we have developed a platform combining a genetic algorithm-based design, optimization suite, and an electromagnetic simulator for designing patch antennas with a shape that is not a priori known (the genetic algorithm optimizes the shape of the patch antenna). The proposed platform is further enhanced by the ability to design and optimize antenna arrays and is intended to be used for the design of a series of antennas including conformal antennas for shipping applications. The flexibility and performance of the proposed platform are demonstrated herein via the design of a high-performance GPS patch antenna.
基于遗传算法的舰载共形贴片天线阵列设计
保形天线和天线阵列(阵列)已经成为需要高度减少空气动力学阻力的车载通信的必要条件,如航空电子设备和船舶。然而,必须符合预定义的形状(例如飞机的机头)直接影响天线性能,因为它对天线阵列的形状、元件间距、相对信号相位等施加了严格的限制。因此,有必要研究反直觉和任意的天线形状,以补偿这些约束。由于没有现成的理论框架可以直接设计和开发任意形状的天线,我们开发了一个结合基于遗传算法的设计、优化套件和电磁模拟器的平台,用于设计具有非先验形状的贴片天线(遗传算法优化贴片天线的形状)。该平台通过设计和优化天线阵列的能力进一步增强,旨在用于设计一系列天线,包括用于航运应用的保形天线。本文通过设计一个高性能GPS贴片天线来验证该平台的灵活性和性能。
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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