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Multiband Operation and Performance Enhancement of the PIFA Antenna by Using Particle Swarm Optimization and Overlapping Method

机译:粒子群优化和重叠算法在PIFA天线的多频带运行和性能增强中的应用

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Recently, the demand for wireless devices that support multiband frequency has increased. The integration of such technology in mobile communication system has led to a great demand in developing small size antenna with multiband operation, which is able to operate in the required system. In this paper, a novel type planar inverted F antenna (PIFA) with gridded ground plane structure and overlapping cells is presented. By controlling the overlapping size, we improve the characteristics of the proposed antenna. This antenna is developed to achieve multiband operation with small size and good performance. The particle swarm optimization (PSO) is employed to a PIFA antenna to get rid of the limitations of single band operation by searching the optimal localization and length of linear slots on the ground plane to give triband operation. This PIFA antenna can be integrated to operate for several mobile applications as Bluetooth/WLAN, WIMAX, and 4G (UMTS2100, LTE). The optimized antenna is simulated by both Ansoft HFSS and computer simulation technology microwave studio (CSTMWS) in terms of S-parameters. A good agreement between simulated performances by both software types is achieved. A parametric study is made to analyze the effect of different PIFA parameters on the operating frequency and the reflection coefficient in order to enhance the antenna performances. In these frequency bands, the antenna has nearly omnidirectional radiation pattern.
机译:近来,对支持多频带频率的无线设备的需求增加了。这种技术在移动通信系统中的集成导致对开发能够在所需系统中运行的具有多频带操作的小尺寸天线的巨大需求。本文提出了一种新型的平面倒F天线(PIFA),其具有网格状接地平面结构和重叠的单元。通过控制重叠大小,我们改善了所提出天线的特性。开发该天线是为了实现小尺寸和良好性能的多频带操作。粒子群优化(PSO)用于PIFA天线,通过搜索接地平面上线性缝隙的最佳位置和长度来实现三频操作,从而摆脱了单频操作的局限性。可以集成此PIFA天线,使其可用于多种移动应用程序,如Bluetooth / WLAN,WIMAX和4G(UMTS2100,LTE)。通过S参数,Ansoft HFSS和计算机仿真技术微波工作室(CSTMWS)对优化的天线进行了仿真。两种软件类型在模拟性能之间达成了良好的一致性。为了提高天线性能,进行了参数研究,分析了不同PIFA参数对工作频率和反射系数的影响。在这些频带中,天线几乎具有全向辐射方向图。

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