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Improved Main-Beam Nulling Through Single Switchable Displaced Element for Small Scale Adaptive Array

机译:小型自适应阵列通过单个可切换位移元件改进的主光束消零

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摘要

This paper proposes a novel scheme to improve the signal-to-noise ratio (SNR) response of the main beam nulling for small-scale adaptive arrays. This method effectively promotes the main-beam nulling performance by introducing a displaced element at the end of an adaptive array. It is easy to implement with very low system cost. A detailed analysis of its working mechanism is provided, and the performance is verified with the simulation results. A switching scheme is introduced further to realize consistent performance for all nulling regions, which can attain similar main beam nulling performance as a larger-scale adaptive array. Combining with the active element pattern method, the performance of the proposed scheme involving mutual coupling is examined with a dipole array. It is consistent with the results acquired in isolated condition, which verifies its feasibility in practice.
机译:本文提出了一种新的方案来改善小规模自适应阵列主波束归零的信噪比(SNR)响应。通过在自适应阵列的末端引入位移元素,该方法有效地提高了主光束归零性能。它很容易以非常低的系统成本实现。提供了其工作机制的详细分析,并通过仿真结果验证了其性能。进一步引入了一种切换方案,以实现所有零陷区域的一致性能,与大型自适应阵列相比,它可以获得类似的主波束零陷性能。结合有源元件图形方法,用偶极子阵列研究了涉及互耦的拟议方案的性能。它与孤立条件下获得的结果一致,证明了其在实践中的可行性。

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