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Far-field DOA estimation and source localization for different scenarios in a distributed sensor network.

机译:分布式传感器网络中不同方案的远场DOA估计和源定位。

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摘要

Recent developments in the integrated circuits and wireless communications not only open up many possibilities but also introduce challenging issues for the collaborative processing of signals for source localization and beamforming in an energy-constrained distributed sensor network. In signal processing, various sensor array processing algorithms and concepts have been adopted, but must be further tailored to match the communication and computational constraints. Sometimes the constraints are such that none of the existing algorithms would be an efficient option for the defined problem and as the resu the necessity of developing a new algorithm becomes undeniable.;In this dissertation, we present the theoretical and the practical issues of Direction-Of-Arrival (DOA) estimation and source localization using the Approximate-Maximum-Likelihood (AML) algorithm for different scenarios. We first investigate a robust algorithm design for coherent source DOA estimation in a limited reverberant environment. Then, we provide a least-square (LS) solution for source localization based on our newly proposed virtual array model.;In another scenario, we consider the determination of the location of a disturbance source which emits both wideband acoustic and seismic signals. We devise an enhanced AML algorithm to process the data collected at the acoustic sensors. For processing the seismic signals, two distinct algorithms are investigated to determine the DOAs. Then, we consider a basic algorithm for fusion of the results yielded by the acoustic and seismic arrays.;We also investigate the theoretical and practical issues of DOA estimation in a three-dimensional (3D) scenario. We show that the performance of the proposed 3D AML algorithm converges to the Cramer-Rao Bound. We use the concept of an isotropic array to reduce the complexity of the proposed algorithm by advocating a decoupled 3D version. We also explore a modified version of the decoupled 3D AML algorithm which can be used for DOA estimation with non-isotropic arrays.;In this dissertation, for each scenario, efficient numerical implementations of the corresponding AML algorithm are derived and applied into a real-time sensor network testbed. Extensive simulations as well as experimental results are presented to verify the effectiveness of the proposed algorithms.
机译:集成电路和无线通信的最新发展不仅打开了许多可能性,而且还为能量受限的分布式传感器网络中的信号源定位和波束形成的信号的协同处理带来了挑战性的问题。在信号处理中,已采用了各种传感器阵列处理算法和概念,但必须进一步调整以匹配通信和计算约束。有时,约束条件使得现有算法都不是定义问题和结果的有效选择;本文提出了在不同情况下使用近似最大似然算法对到达方向估计和源定位的理论和实践问题。 。我们首先研究了在有限混响环境中用于相干源DOA估计的鲁棒算法设计。然后,基于我们新提出的虚拟阵列模型,为源定位提供了最小二乘(LS)解决方案。在另一种情况下,我们考虑确定同时发射宽带声和地震信号的干扰源的位置。我们设计了一种增强的AML算法来处理在声传感器处收集的数据。为了处理地震信号,研究了两种不同的算法来确定DOA。然后,我们考虑一种融合声波阵列和地震波阵列产生的结果的基本算法。我们还研究了三维(3D)场景中DOA估计的理论和实践问题。我们表明,提出的3D AML算法的性能收敛于Cramer-Rao Bound。我们使用各向同性阵列的概念,通过提倡解耦的3D版本来降低所提出算法的复杂性。我们还探索了去耦3D AML算法的改进版本,该算法可用于非各向同性阵列的DOA估计。在本论文中,针对每种情况,都推导了相应AML算法的有效数值实现并将其应用于实际时间传感器网络测试平台。大量的仿真和实验结果被提出来验证所提出算法的有效性。

著录项

  • 作者

    Asgari, Shadnaz.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Electronics and Electrical.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;声学;
  • 关键词

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