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Synthesis of a Near-Optimal High-Gain Antenna Array With Main Lobe Tilting and Null Filling Using Taguchi Initialized Invasive Weed Optimization

机译:Taguchi初始化有创杂草优化合成具有主瓣倾斜和零位填充的近乎最佳的高增益天线阵列

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摘要

A near-optimal base-station antenna array synthesis suitable for broadcasting applications is presented. The array is required to provide a high-gain radiation pattern with a main lobe slightly tilted from the horizontal plane and null filling inside an angular sector under the main lobe. To satisfy the above requirements, a novel invasive weed optimization (IWO) variant called Taguchi initialized IWO (TI-IWO) is proposed in this paper. In TI-IWO, the Taguchi's optimization method is employed to initialize effectively the positions of the weeds used by the IWO method. In this way, the fitness function starts from lower values and, thus, the TI-IWO method finds better near-optimal solutions than the conventional IWO method. The proposed method has been applied to linear arrays. Due to its easy implementation in practice, a uniform-amplitude excitation distribution is considered to be applied on the array elements. Two cases of isotropic source arrays are studied under specific requirements for maximum possible gain, main lobe tilting, and null filling. Also, the TI-IWO method is applied to optimize realistic cases of collinear wire dipole arrays in front of a mast under the same requirements and an additional one concerning the impedance matching of all the dipoles.
机译:提出了一种适合广播应用的近乎最佳的基站天线阵列合成方法。要求该阵列提供高增益辐射方向图,其主瓣从水平面稍微倾斜,并且在主瓣下方的角扇区内进行零填充。为了满足上述要求,本文提出了一种新型的田间杂草优化(IWO)变种,称为田口初始化的IWO(TI-IWO)。在TI-IWO中,采用Taguchi优化方法有效地初始化了IWO方法使用的杂草的位置。以这种方式,适应度函数从较低的值开始,因此,TI-IWO方法比常规的IWO方法找到更好的近似最优解。所提出的方法已经应用于线性阵列。由于其在实践中易于实施,因此考虑将均匀振幅激励分布应用于阵列元素。根据最大可能增益,主瓣倾斜和零位填充的特定要求,研究了两种情况的各向同性源阵列。此外,TI-IWO方法还用于在相同要求下以及在涉及所有偶极子的阻抗匹配的另一要求下,优化桅杆前的共线导线偶极子阵列的实际情况。

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