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Simulation of post-ADC digital beamforming for large aperture array radars

机译:大口径阵列雷达的ADC后数字波束形成的仿真

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摘要

This paper presents simulations and methods developed to investigate the feasibility of using a Fractional-Sample-Delay (FSD) system in the planned EISCAT_3D incoherent scatter radar. Key requirements include a frequency-independent beam direction over a 30 MHz band centered around 220 MHz, with correct reconstruction of pulse lengths down to 200 ns. The clock jitter from sample to sample must be extremely low for the integer sample delays. The FSD must also be able to delay the 30 MHz wide signal band by 1/1024th of a sample without introducing phase shifts, and it must operate entirely in baseband. An extensive simulation system based on mathematical models has been developed, with inclusion of performance-degrading aspects such as noise, timing error, and bandwidth. Finite Impulse Response (FIR) filters in the baseband of a band-pass-sampled signal have been used to apply true time delay beamforming. It has been confirmed that such use is both possible and well behaved. The target beam-pointing accuracy of 0.06° is achievable using optimized FIR filters with lengths of 36 taps and an 18 bit coefficient resolution. Even though the minimum fractional delay step necessary for beamforming is ~ 13.1 ps, the maximum sampling timing error allowed in the array is found to be σ ≤ 120 ps if the errors are close to statistically independent.
机译:本文介绍了模拟和方法,以研究在计划的EISCAT_3D非相干散射雷达中使用分数采样延迟(FSD)系统的可行性。关键要求包括以220 MHz为中心的30 MHz频带上与频率无关的波束方向,并正确重建低至200 ns的脉冲长度。对于整数采样延迟,采样之间的时钟抖动必须非常低。 FSD还必须能够在不引入相移的情况下将30 MHz宽的信号频带延迟一个采样的1/1024,并且它必须完全在基带中工作。已经开发了基于数学模型的广泛仿真系统,其中包括性能降低方面,例如噪声,定时误差和带宽。带通采样信号的基带中的有限脉冲响应(FIR)滤波器已用于应用真实的时延波束成形。已经证实这种使用是可能的并且表现良好。使用长度为36抽头,18位系数分辨率的优化FIR滤波器,可以实现0.06°的目标光束指向精度。即使波束成形所需的最小分数延迟步长为〜13.1 ps,但如果误差接近于统计独立性,则发现阵列中允许的最大采样时序误差为σ≤120 ps。

著录项

  • 来源
    《Radio Science》 |2010年第3期|P.RS3001.1-RS3001.12|共12页
  • 作者单位

    CSEE, Lulea University of Technology, SE-971 87 Lulea, Sweden;

    rnCSEE, Lulea University of Technology, SE-971 87 Lulea, Sweden;

    rnCSEE, Lulea University of Technology, SE-971 87 Lulea, Sweden;

    rnCSEE, Lulea University of Technology, SE-971 87 Lulea, Sweden;

    rnCSEE, Lulea University of Technology, Lulea, Sweden Swedish Institute of Space Physics, Box 812, SE-981 28 Kiruna, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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