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Development and analysis of signal copy and blind equalization algorithms.

机译:信号复制和盲均衡算法的开发和分析。

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摘要

The process of signal waveform estimation using an antenna array in non-dispersive and dispersive channels is often referred to as signal copy and equalization, respectively. This thesis centers on these two applications.;The signal copy algorithms developed up to the present include conventional direction-finding (DF) based algorithms which estimate the signals by forming a weighted linear combination of the array outputs, and blind copy algorithms that exploit certain known properties of the signals such as cyclostationarity and the constant modulus property. In DF-based signal copy applications, the weight vector computation involves knowledge of both the array response and the directions-of-arrival (DOA) of the signals. Any errors in the array model not only affect the array response, but also the accuracy of the DOA estimates. The perturbed array response and the resulting imprecise DOA estimates can lead to serious degradation in signal copy performance. To provide some insight into choosing an appropriate algorithm for a practical application, several commonly used signal copy algorithms are studied in this thesis. Effects of the array calibration errors, DOA estimation errors, and noise are considered. Two performance metrics, mean squared error (MSE) and signal to interference plus noise ratio (SINR), are used to evaluate the algorithms. Analytical MSE and SINR expressions are provided, and performance orderings of some of the algorithms are established. The analysis is verified by simulation examples.;This thesis also presents two new algorithms to improve signal copy performance. The first technique combines information about both the spatial and temporal structure of the signals. It uses an initial blind estimate of the signals to compute a least-squares estimate of the array response, which in turn is used to update the signal estimates. The second technique is a decision directed approach for extracting digital signals from antenna array data. This algorithm alternates between (1) estimating and demodulating the received signals, and (2) using the resulting bit decisions to regenerate the signal waveforms and recompute the signal copy weight vectors. An analysis of the (asymptotic) bit-error rate performance of the algorithm for the case of BPSK signals is included.;The problem of equalizing a (narrowband) multipath channel using data from an array of sensors is also addressed in this thesis. Two equalization algorithms are presented, both based on a frequency domain representation of the data and the possible availability of array calibration data. The performance of these algorithms is compared with that of several other recently developed equalization techniques, and is shown to be superior provided the calibration data is reasonably accurate. Some heuristic methods are also presented for handling cases involving multiple sources with differing multipath structure.
机译:在非分散和分散信道中使用天线阵列进行信号波形估计的过程通常分别称为信号复制和均衡。本文主要针对这两个应用。到目前为止,开发的信号复制算法包括基于常规方向寻找(DF)的算法,该算法通过形成阵列输出的加权线性组合来估计信号,以及利用某些信号的盲复制算法。信号的已知特性,例如循环平稳性和恒定模量特性。在基于DF的信号复制应用程序中,权重向量计算涉及信号的阵列响应和到达方向(DOA)的知识。阵列模型中的任何错误不仅会影响阵列响应,还会影响DOA估计的准确性。扰动的阵列响应和由此产生的不精确的DOA估计可能导致信号复制性能严重下降。为了为选择适合实际应用的算法提供一些见识,本文研究了几种常用的信号复制算法。考虑了阵列校准误差,DOA估计误差和噪声的影响。两种性能指标均方误差(MSE)和信干噪比(SINR)用于评估算法。提供了解析的MSE和SINR表达式,并建立了某些算法的性能顺序。仿真实例验证了分析结果。本文还提出了两种提高信号复制性能的新算法。第一种技术结合了有关信号的空间和时间结构的信息。它使用信号的初始盲估计来计算阵列响应的最小二乘估计,然后将其用于更新信号估计。第二种技术是从天线阵列数据中提取数字信号的决策指导方法。该算法在(1)估计和解调接收到的信号之间进行交替,并且(2)使用结果位决策来重新生成信号波形并重新计算信号复制权重向量。分析了该算法在BPSK信号情况下的(渐近)误码率性能。本文还解决了使用传感器阵列的数据均衡(窄带)多径信道的问题。提出了两种均衡算法,均基于数据的频域表示形式和阵列校准数据的可能可用性。将这些算法的性能与其他几种最近开发的均衡技术的性能进行了比较,并且在校准数据相当准确的情况下表现出优异的性能。还提出了一些启发式方法来处理涉及具有不同多路径结构的多个源的案例。

著录项

  • 作者

    Yang, Jiankan Jack.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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