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Study for generalized sidelobe canceller at subarray level based on Householder transformation

机译:基于Householder变换的广义子瓣对消子阵列级研究

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Adaptive digital beamforming(ADBF) at subarray level is one of crucial techniques for phased array radar. Generalized sidelobe canceller(GSLC) at subarray level is an effective solution in the presence of array imperfections such as amplitude and phase errors, while the key lies in appropriate blocking matrix(BM) to block desired signal and adaptive weights for suppressing jammers. While at subarray level, using conventional BM will degrade the performance of beam such as that notch deviates for phase errors and signal-to-interference-plus-noise ratio(SINR) loses. This paper presents an implementation for GSLC configuration at subarray level by utilizing Householder transformation to determine BM. Simulation results demonstrate that the proposed method can raise SINR obviously and is insensitive to channel errors even if to phase ones.
机译:子阵列级的自适应数字波束形成(ADBF)是相控阵雷达的关键技术之一。在存在阵列缺陷(例如幅度和相位误差)的情况下,子阵列级的广义旁瓣抵消器(GSLC)是一种有效的解决方案,而关键在于适当的阻塞矩阵(BM)以阻塞所需信号和自适应权重以抑制干扰。在子阵列级别,使用常规BM会降低光束的性能,例如,陷波会因相位误差而偏离,并且会损失信号干扰加噪声比(SINR)。本文通过利用Householder变换确定BM提出了子阵列级别的GSLC配置的实现。仿真结果表明,该方法能明显提高信噪比,即使对相位误差也不敏感。

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