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High resolution direction of arrival estimation analysis and implementation in a smart antenna system.

机译:智能天线系统中高分辨率到达方向估计的分析和实现。

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摘要

The goal of this research is to equip the smart antenna system designed by the telecommunication group at the department of Electrical and Computer Engineering at Montana State University with high resolution direction of arrival estimation (DOA) capabilities; the DOA block should provide accurate estimates of emitters' DOAs while being computationally efficient. Intensive study on DOA estimation algorithms was carried out to pinpoint the most suitable algorithm for the application of interest, and the spectral methods were chosen for this study. The outcome of the study consisted of generating a novel algorithm, spatial selective MUSIC, which is comparable in accuracy to other high resolution algorithms but does not require the intensive computational burden that is typical of high resolution spectral methods. Spatial selective MUSIC is compared in terms of bias, resolution, robustness and computational efficiency against the most widely used DOA estimation algorithms, namely, Bartlett, Capon, MUSIC, and beamspace MUSIC. The design, troubleshooting, and implementation of the hardware needed to implement the DOA estimation in a real case scenario was achieved. Two design phases were necessary to implement the center piece of the hardware needed to achieve DOA estimation. The 5.8 GHz 8 channel receiver board along with a casing that egg crates the RF channels for channel-to-channel isolation was designed and built. A National Instrument data acquisition card was used to simultaneously sample all the 8 channels at 2.5 MSPS, the data was processed using the PC interface built in LabView. Phase calibration that accounts for the overall system magnitude and phase differences along with a novel calibration method to mitigate the effects of magnitude and phase variations along with mutual coupling was produced during this research and was imperative to achieving high resolution DOA estimation in the lab. The DOA estimation capabilities of the built system was tested within the overall smart antenna system and showed promising results. The overall performance enhancement that the DOA estimation block can provide cannot however be fully realized until the beamforming block is revised to provide accurate and deep null placing along with a narrower beam width. This cannot be achieved with the current system due to limitations in the number of the array elements used and the granularity in the phase shifters and attenuators used in the analog beamformer.
机译:这项研究的目的是为由蒙大拿州立大学电气与计算机工程系电信部门设计的智能天线系统配备高分辨率的到达方向估计(DOA)功能; DOA模块应提供发射器DOA的准确估算,同时具有计算效率。对DOA估计算法进行了深入研究,以找出最适合感兴趣应用的算法,并选择了频谱方法进行此项研究。该研究的结果包括生成一种新颖的算法,即空间选择性MUSIC,其精确度可与其他高分辨率算法相媲美,但不需要高分辨率光谱方法所特有的密集计算负担。将空间选择性MUSIC与最广泛使用的DOA估计算法,即Bartlett,Capon,MUSIC和Beamspace MUSIC相比,在偏差,分辨率,鲁棒性和计算效率方面进行了比较。实现了在实际情况下实现DOA估计所需的硬件的设计,故障排除和实现。必须实施两个设计阶段才能实现实现DOA估计所需的核心硬件。设计并制造了5.8 GHz 8通道接收器板,以及一个将鸡蛋装在板条箱中的外壳,用于封装RF通道以实现通道间隔离。使用National Instruments数据采集卡以2.5 MSPS的速率同时采样所有8个通道,并使用LabView内置的PC接口处理数据。这项研究产生了考虑了整个系统幅度和相位差的相位校准,以及一种减轻幅度和相位变化以及相互耦合影响的新颖校准方法,这对于在实验室中实现高分辨率DOA估计至关重要。已在整个智能天线系统中测试了构建系统的DOA估计功能,并显示出令人鼓舞的结果。但是,直到修订波束成形模块以提供准确且深度的零位放置以及较窄的波束宽度,DOA估计模块才能提供的总体性能增强才能完全实现。由于使用的阵列元件的数量以及模拟波束形成器中使用的移相器和衰减器的粒度的限制,当前系统无法实现这一点。

著录项

  • 作者

    Khallaayoun, Ahmed.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:45

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