一种基于改进MVDR自适应波束形成器的线阵自定标技术

Omar Khaldoon, A. Aljaaf, M. Alloghani
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引用次数: 0

摘要

自适应智能天线是天线阵列和波束形成算法的结合。最小方差无失真响应算法(MVDR)是一种重要的自适应波束形成算法,它具有最优权值和良好的输出信噪比。MVDR对由于阵列天线的制造或校准误差而产生的转向矢量误差非常敏感。由于这个错误,出现了信号抑制(自空)现象,即假定信号和实际信号的到达方向(DOA)不匹配。由于恶劣天气的变化,在智能天线工作期间和最终校准测试后也可能出现这种误差。根据这种天气变化,阵列的形状会发生变化,从而导致天线间距的误差。这将导致MVDR波束形成器性能的严重下降。提出了一种新的智能天线自校准诊断算法。该算法旨在克服校准/制造或形状畸变误差,这些误差本质上可能存在或可能由于天气变化的影响而产生。该算法将基准单元重新定位到均匀线阵的中间位置,其余天线单元均匀分布在基准阵的两侧。该配置在引用的两侧生成两个相同的子数组。由于两个子阵的性能相同,阵列天线单元间的距离变化很容易区分。仿真结果表明,该算法对控制矢量误差有较好的响应,主要是由主辐射波束提供所需的信号,而干扰被空阻挡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Self-Calibration Technique for Linear Array Based on Modified MVDR Adaptive Beamformer
Adaptive smart antenna is a combination of antenna arrays and beamforming algorithm. One of the important adaptive beamforming algorithms is Minimum Variance Distortionless Response algorithm (MVDR), which has optimal weight and very good output Signal-to-Interference Noise Ratio (SINR). MVDR is very sensitive to the steering vector errors that may occur due to manufacturing or calibration errors at antennas of the array. Signal suppress (selfnull) phenomena appeared due to this error, where mismatch between presume and actual signals Direction of Arrival (DOA) occurred. This error also may be occurred during the work time of smart antenna and after the final calibration test due the hard weather changes. According to this weather change, the shape of array changes and leads to error in the antenna interdistance. This leads to major degradation in the MVDR beamformer performance. In this paper, a novel diagnoses algorithm of smart antenna self-calibration is proposed. This algorithm aimed to overcome the calibration/manufacturing or shape distortion errors that may essentially exist or may occur by weather changes effect. According to this algorithm the reference element is re-localized to be in the middle of the Uniform Linear Array and the rest antenna elements distributed identically at the two sides of this reference. This configuration generates two identical sub-arrays at the two sides of the reference. Due to identical performance of the two subarrays, the inter-distance change between array’s antenna elements easily distinguish. Simulation results showed that the proposed algorithm has an effective response against steering vector errors since the desired signal is served by the main radiation beam while the interference is blocked by null.
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