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Generation of low sidelobe beams using Taylor's method and genetic algorithm

机译:使用泰勒方法和遗传算法生成低旁瓣波束

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Various types of non isotropic radiating elements are used in an array in order to achieve the desired characteristics. The lower the sidelobe levels the more is the directivity. Array synthesis is used to obtain the desired pattern and to find the relative element excitations to achieve the desired characteristics. Among the synthesis methods for the generation of the symmetrical patterns the Taylors synthesis is chosen because in this synthesis there is flexibility to fix the sidelobe level and the number of sidelobes having the same sidelobe level. An attempt is also made to use GA for the synthesis of the amplitude excitation coefficients to yield a desired radiation pattern of a linear antenna array with reduced sidelobes and the patterns are compared with the results obtained using Taylor's method. By decreasing the sidelobe levels and beamwidth, pencil beams can be produced which are used for the tracking purposes.
机译:为了获得期望的特性,在阵列中使用各种类型的非各向同性辐射元件。旁瓣电平越低,方向性就越大。阵列合成用于获得所需的图案,并找到相对的元素激发以获得所需的特性。在用于产生对称图案的合成方法中,选择泰勒斯(Taylors)合成是因为在该合成中,可以灵活地固定旁瓣电平和具有相同旁瓣电平的旁瓣数量。还尝试使用GA来合成振幅激励系数,以产生具有减小的旁瓣的线性天线阵列的期望辐射图,并将该图与使用泰勒方法获得的结果进行比较。通过降低旁瓣电平和波束宽度,可以产生用于跟踪目的的笔形波束。

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