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SAWOA: Self-Adaptive Whale Optimization Algorithm for Notch Filter Design in UWB Antenna Applications

机译:SAWOA:UWB天线应用中陷波滤波器设计的自适应鲸鱼优化算法

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In this letter, a new Self-Adaptive Whale Optimization Algorithm (SA WOA)is introduced and applied to the design of a printed antenna with ultra wide band (UWB)characteristics. This algorithm is implemented on a basic structure of an octagonal printed antenna which includes a search process based on finding an optimal solution for the effective length of a H-Shaped Notch filter located in the patch. The filter position in conjunction with the effective length determines the frequency ranges that will be rej ected and can be adjusted over the entire operational range of the antenna. In this case, it is proposed to rej ect the frequency bands for IEEE 802.11a and WLAN-HIPERLAN / 2 from 5.1 to 5.9 GHz by applying SA WOA, obtaining an effective filter length of approximately 18.6454 mm and positioned around 12.5269 mm from the power line to ensure an optimum rejection with a center frequency of 5.5 GHz. The dimensions for the optimized printed UWn B octagonal antenna are 30 mm × 35 mm, with a bandwidth of3.1 to 12 GHz and a return loss less than -10 dB throughout the UWB frequency range except in the optimized rejection range. The proposed SA WOA algorithm uses a correlation-based cost function between the fitness agent and a previously defined response pattern, resulting in a shorter computational time to achieve best parameters providing a high structure precision as well as high performance level.
机译:在这封信中,引入了一种新的自适应鲸鲸优化算法(SA WOA)并应用于具有超宽带(UWB)特性的印刷天线的设计。该算法在八边形印刷天线的基本结构上实现,其包括基于找到位于贴片中的H形陷波滤波器的有效长度的最佳解决方案的搜索过程。与有效长度结合的滤波器位置确定将被Rej的频率范围连接,并且可以在天线的整个操作范围内调整。在这种情况下,提出通过施加SA WOA将IEEE 802.11a和WLAN-HIPERLAN / 2的频带从5.1到5.9 GHz进行REJ,获得约18.6454mm的有效滤波器长度,并且距电源约为12.5269mm线路以确保最佳抑制,中心频率为5.5 GHz。优化的印刷UWN B八角形天线的尺寸为30mm×35mm,带宽为3.1至12 GHz,除了优化抑制范围之外,在整个UWB频率范围内的返回损耗小于-10 dB。所提出的SA WOA算法使用适应性代理和先前定义的响应模式之间的基于相关的成本函数,从而实现了较短的计算时间来实现提供高结构精度以及高性能的最佳参数。

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