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Adaptive nulling in monopulse antennas

机译:单脉冲天线中的自适应调零

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Theoretical and experimental results are presented for phase-only nulling in low-sidelobe monopulse antennas. Both results are based on a gradient search algorithm that simultaneously searches for a minimum in the sum and difference channel output powers. The array's beam steering phase shifters double as the adaptive weights. Each element in the gradient is found by changing phase shifter setting by Delta Psi (the phase shifter stepsize) and measuring the change in output power. Then the phase shifter is restored to its original value, and the process repeated for all the remaining array phase shifters. The algorithm iterates as long as each new adaptive weight setting reduces the total output power. If the output does not go down, then Delta Psi is decremented by one setting and the iteration is started again. The algorithm stops when Delta Psi =0. The adaptive weights act as random perturbations to the phase taper of the array. Consequently, the sidelobe level is proportional to the size of the phase perturbations and inversely related to the number of elements. By keeping the adaptive phase shifts small, the average sidelobe level and the main beam gain do not drastically change.
机译:给出了低旁瓣单脉冲天线中仅相位归零的理论和实验结果。这两个结果均基于梯度搜索算法,该算法同时搜索总和和差值通道输出功率中的最小值。阵列的光束控制移相器是自适应权重的两倍。通过用Delta Psi改变移相器设置并测量输出功率的变化,可以找到梯度中的每个元素。然后,将移相器恢复到其原始值,并对所有其余的阵列移相器重复该过程。只要每个新的自适应权重设置降低总输出功率,该算法就会迭代。如果输出没有下降,则将Delta Psi减一,然后再次开始迭代。当Delta Psi = 0时,算法停止。自适应权重充当阵列相位锥度的随机扰动。因此,旁瓣电平与相位扰动的大小成正比,与元素数量成反比。通过保持自适应相移较小,平均旁瓣电平和主波束增益不会急剧变化。

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