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Sidelobe level performance of adaptive sidelobe canceller arrays with element reuse

机译:自适应旁瓣抵消器阵列的旁瓣级性能与元素重用

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The performance of adaptive sidelobe canceller (SLC) arrays that use the same elements for the main channel and auxiliary signals is studied. The SLC with element reuse is different from the conventional SLC because the thermal noise components of the main channel and auxiliary signals may be correlated. The noise correlation may cause serious sidelobe-level (SLL) degradation when the number of degrees of freedom exceeds the number necessary to cancel the jammers present. It is shown how his degradation can be eliminated by forming each auxiliary from subarrays rather than single elements so that an orthogonality condition is satisfied. It is shown that good cancellation and SLL performance can be obtained by using small subarrays with directive auxiliary patterns satisfying the orthogonality condition.
机译:研究了对主信道和辅助信号使用相同元素的自适应旁瓣抵消器(SLC)阵列的性能。具有元素重用的SLC与常规SLC不同,因为主通道和辅助信号的热噪声成分可能会相互关联。当自由度的数量超过消除存在干扰的必要数量时,噪声相关性可能导致严重的旁瓣电平(SLL)下降。它显示了如何通过从子阵列而不是单个元素形成每个辅助元素来消除他的退化,从而满足正交性条件。结果表明,通过使用具有满足正交性条件的定向辅助模式的小型子阵列,可以获得良好的消除和SLL性能。

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