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OFDM under Oscillator Phase Noise : Contributions to Analysis and Estimation Methods

机译:振荡器相位噪声下的OFDM:对分析和估计方法的贡献

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摘要

Most modern transmitters and receivers involve an analog front-end unit and a digital back-end unit. The digital back-end is responsible for information processing which involves thefollowing: redundancy removal from information; information representation; improvinginformation resilience; and information correction. The analog front-end is responsible forinformation transmission and reception. The information processing algorithms developedand implemented in the digital back-end assume a linear and noiseless analog front-end which,in reality, is not the case. This renders some of the information processing algorithms to be lesseffective in practice. The focus of this thesis is on orthogonal frequency-division multiplexing(OFDM) systems under the influence of oscillator phase noise. OFDM is an efficientinformation representation technique used in many communication systems. On the otherhand, phase noise is one type of undesired noise that occurs in the oscillator device used in theanalog front-end. It arises due to the imperfect task of frequency conversion, performed by theoscillator device, between baseband and radio frequency. This thesis contributes to the areas of analysis and estimation in OFDM systems under theinfluence of oscillator phase noise. With regard to analysis, this thesis contributes by derivingthe channel capacity assuming a Gaussian input alphabet. The aim here is to show bothquantitatively and qualitatively the degradation in performance of the OFDM system in thepresence of phase noise. The analysis is conducted for phase noise processes that occur in bothfree-running and phase-locked loop based oscillators and also extended to include the effect ofcarrier frequency offset. With regard to estimation, two new phase noise estimation algorithmsare proposed in this thesis. In particular, these algorithms restrict the search space to a specific subset, where the desired phase noise parameter of interest is shown to lie. For example, in the first estimation method, possible subspaces in which the desired phase noise spectral vector may lie are used in the estimation step. In the second method, the geometry of the desired phase noise spectral vector is used in the estimation step. Specifically, this geometry corresponds to a non-convex set described by a set of quadratic forms that involve permutation matrices. By restricting the search space to this set, the accuracy of phase noise estimation can be improved.
机译:大多数现代的发送器和接收器都涉及一个模拟前端单元和一个数字后端单元。数字后端负责信息处理,涉及以下内容:从信息中消除冗余;信息表示;增强信息弹性;和信息校正。模拟前端负责信息的发送和接收。在数字后端中开发和实现的信息处理算法假定是线性且无噪声的模拟前端,但实际上并非如此。这使得某些信息处理算法在实践中效率较低。本文的重点是在振荡器相位噪声影响下的正交频分复用(OFDM)系统。 OFDM是一种在许多通信系统中使用的有效信息表示技术。另一方面,相位噪声是在模拟前端中使用的振荡器设备中发生的一种不期望的噪声。这是由于振荡器设备在基带和射频之间执行的频率转换任务不完善而引起的。本文对振荡器相位噪声影响下的OFDM系统分析和估计领域做出了贡献。关于分析,本论文通过推导假设高斯输入字母的信道容量做出了贡献。这里的目的是定量地和定性地示出在存在相位噪声的情况下OFDM系统的性能下降。分析是针对基于自由运行和基于锁相环的振荡器中发生的相位噪声过程进行的,并且还扩展到包括载波频率偏移的影响。关于估计,本文提出了两种新的相位噪声估计算法。特别是,这些算法将搜索空间限制为特定子集,其中特定的所需相位噪声参数位于其中。例如,在第一估计方法中,在估计步骤中使用了期望的相位噪声频谱矢量可能位于其中的可能子空间。在第二种方法中,在估计步骤中使用了所需相位噪声频谱矢量的几何形状。具体地,该几何形状对应于由涉及置换矩阵的一组二次形式描述的非凸集。通过将搜索空间限制在该范围内,可以提高相位噪声估计的精度。

著录项

  • 作者

    Jacob Mathecken Pramod;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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