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Design of dual-frequency probe-fed microstrip antennas with genetic optimization algorithm

机译:基于遗传优化算法的双频探测馈电微带天线设计

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摘要

Dual-frequency operation of antennas has become a necessity for many applications in recent wireless communication systems, such as GPS, GSM services operating at two different frequency bands, and services of PCS and IMT-2000 applications. Although there are various techniques to achieve dual-band operation from various types of microstrip antennas, there is no efficient design tool that has been incorporated with a suitable optimization algorithm. In this paper, the cavity-model based simulation tool along with the genetic optimization algorithm is presented for the design of dual-band microstrip antennas, using multiple slots in the patch or multiple shorting strips between the patch and the ground plane. Since this approach is based on the cavity model, the multiport approach is efficiently employed to analyze the effects of the slots and shorting strips on the input impedance. Then, the optimization of the positions of slots and shorting strips is performed via a genetic optimization algorithm, to achieve an acceptable antenna operation over the desired frequency bands. The antennas designed by this efficient design procedure were realized experimentally, and the results are compared. In addition, these results are also compared to the results obtained by the commercial electromagnetic simulation tool, the FEM-based software HFSS by ANSOFT.
机译:在最近的无线通信系统中,天线的双频操作已成为许多应用程序的必要条件,例如GPS,在两个不同频带上运行的GSM服务以及PCS和IMT-2000应用程序的服务。尽管有各种各样的技术可以从各种类型的微带天线实现双频操作,但是还没有有效的设计工具与合适的优化算法结合在一起。在本文中,提出了基于空腔模型的仿真工具以及遗传优化算法,用于设计双频段微带天线,该设计使用了贴片中的多个缝隙或贴片与接地层之间的多个短路条。由于此方法基于腔模型,因此有效地采用了多端口方法来分析缝隙和短路条对输入阻抗的影响。然后,通过遗传优化算法对缝隙和短路条的位置进行优化,以在所需频带上实现可接受的天线操作。通过实验实现了通过这种高效设计程序设计的天线,并对结果进行了比较。此外,还将这些结果与商用电磁仿真工具(ANSOFT基于FEM的软件HFSS)获得的结果进行比较。

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