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The bandwidth performance of a two-element adaptive array with tapped delay-line processing

机译:带有抽头延迟线处理的两元素自适应阵列的带宽性能

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摘要

The bandwidth performance of a two-element adaptive array with a tapped delay line behind each element is examined. It is shown how the number of taps and the delay between taps affect the bandwidth performance of the array. An array with two weights and one delay behind each element is found to yield optimal performance (equal to that obtained with continuous-wave interference) for any value of intertap delay between zero and T/sub 90//B, where T/sub 90/ is a quarter-wavelength delay time and B is the fractional signal bandwidth. Delays less that T/sub 90/ yield optimal performance but result in large array weights. Delays larger than T/sub 90//B yield suboptimal signal-to-interference-plus-noise ratio when each element has only two weights. For delays between T/sub 90//B and 4T/sub 90//B, the performance is suboptimal with only two taps but approaches the optimal if more taps are added to each element. Delays larger than T/sub 90//B result in suboptimal performance regardless of the number of taps used.
机译:检查了两个元素自适应阵列的带宽性能,每个元素后面都有一个带抽头的延迟线。显示了抽头的数量和抽头之间的延迟如何影响阵列的带宽性能。对于在零和T / sub 90 // B之间的任何间隔延迟值,其中T / sub 90,发现在每个元素后面具有两个权重且一个延迟的阵列可以产生最佳性能(等于连续波干扰获得的性能)。 /是四分之一波长延迟时间,B是分数信号带宽。延迟小于T / sub 90 /可获得最佳性能,但会导致较大的阵列权重。当每个元素只有两个权重时,大于T / sub 90 // B的延迟会导致次优的信号干扰加噪声比。对于T / sub 90 // B和4T / sub 90 // B之间的延迟,仅两个抽头的性能不佳,但如果向每个元素添加更多的抽头,则性能接近最佳。大于T / sub 90 // B的延迟导致次优性能,而不管使用的抽头数量如何。

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