A time domain beamforming method of UWB pulse array

Wang Min, Wu Shunjun
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引用次数: 6

Abstract

The principle of space-time processing is discussed here after a realistic UWB pulse model introduced in the paper. The problem of realization of variable delay circuits is addressed. Delay line is not enough for accurately beam steering. A digital filter method by compensating channel dispersed delay for time domain beamforming is presented here. An ideal system with fractional sample delay hat occurs in insufficient sample of UWB pulse signal is not realizable. The two filter approaches involving FIR and allpass filter are given to approximate casual and stable system with the fractional delay. The Lagrange interpolation for FIR filter and complex cepstral computation for allpass filter are examined. A comparison of UWB pulse array directivity versus conventional phased array directivity has been done. The effect of different sampling rate and noise level is discussed. In the experiment, the FIR and allpass filter with a capability of accurate propagation delay compensation improved the beamforming performance remarkably. The results indicate the feasibility and effectiveness of the method.
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一种超宽带脉冲阵列的时域波束形成方法
本文介绍了一个实际的超宽带脉冲模型,讨论了时空处理的原理。讨论了可变延时电路的实现问题。延迟线不足以精确地控制波束。提出了一种补偿信道分散延迟的时域波束形成数字滤波方法。在UWB脉冲信号采样不足的情况下,存在分数采样延迟的理想系统是无法实现的。给出了FIR滤波器和全通滤波器两种滤波方法来近似具有分数阶延迟的随机稳定系统。研究了FIR滤波器的拉格朗日插值和全通滤波器的复倒谱计算。对超宽带脉冲阵列的指向性与传统相控阵的指向性进行了比较。讨论了不同采样率和噪声水平的影响。在实验中,具有精确传播延迟补偿能力的FIR和全通滤波器显著提高了波束形成性能。结果表明了该方法的可行性和有效性。
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