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Multirate signal processing concepts in digital communications

机译:数字通信中的多速率信号处理概念

摘要

Multirate systems are building blocks commonly used in digital signal processing (DSP). Their function is to alter the rate of the discrete-time signals, by adding or deleting a portion of the signal samples. They are essential in various standard signal processing techniques such as signal analysis, denoising, compression and so forth. During the last decade, however, they have increasingly found applications in new and emerging areas of signal processing, as well as in several neighboring disciplines such as digital communications.The main contribution of this thesis is aimed towards a better understanding of multirate systems and their use in modern communication systems. To this end, we first study a property of linear systems appearing in certain multirate structures. This property is called biorthogonal partnership and represents a terminology introduced recently to address a need for a descriptive term for such class of filters. In the thesis we especially focus on the extensions of this simple idea to the case of vector signals (MIMO biorthogonal partners) and to accommodate for nonintegral decimation ratios (fractional biorthogonal partners).The main results developed here study the properties of biorthogonal partners, e.g., the conditions for the existence of stable and of finite impulse response (FIR) partners. In this context we develop the parameterization of FIR solutions, which makes the search for the best partner in a given application analytically tractable. This proves very useful in their central application, namely, channel equalization in digital communications with signal oversampling at the receiver. A good channel equalizer in this context is one that helps neutralize the distortion on the signal introduced by the channel propagation but not at the expense of amplifying the channel noise.In the second part of the thesis, we focus on another class of multirate systems, used at the transmitter side in order to introduce redundancy in the data stream. This redundancy generally serves to facilitate the equalization process by forcing certain structure on the transmitted signal. We first consider the transmission systems that introduce the redundancy in the form of a cyclic prefix. The examples of such systems include the discrete multitone (DMT) and the orthogonal frequency division multiplexing (OFDM) systems. We study the signal precoding in such systems, aimed at improving the performance by minimizing the noise power at the receiver.We also consider a different class of communication systems with signal redundancy, namely, the multiuser systems based on code division multiple access (CDMA). We specifically focus on the special class of CDMA systems called `a mutually orthogonal usercode receiver' (AMOUR). We show how to find the best equalizer from the class of zero-forcing solutions in such systems, and then increase the size of this class by employing alternative sampling strategies at the receiver.
机译:多速率系统是数字信号处理(DSP)中常用的构件。它们的功能是通过添加或删除一部分信号样本来更改离散时间信号的速率。它们在各种标准信号处理技术(例如信号分析,降噪,压缩等)中至关重要。然而,在过去的十年中,他们越来越多地在新兴的信号处理领域以及诸如数字通信之类的几个相邻学科中找到应用。本论文的主要贡献旨在更好地理解多速率系统及其特性。在现代通信系统中使用。为此,我们首先研究在某些多速率结构中出现的线性系统的性质。此属性称为双正交合作伙伴关系,表示最近引入的术语,用于满足此类过滤器的描述性术语的需求。在本文中,我们特别关注于将这种简单的思想扩展到矢量信号(MIMO双正交伴侣)的情况,并适应非整数抽取率(分数双正交伴侣)。在此得出的主要结果研究了双正交伴侣的性质,例如,是存在稳定和有限冲激响应(FIR)伙伴的条件。在这种情况下,我们开发了FIR解决方案的参数化,这使得在给定应用程序中寻找最佳合作伙伴的分析变得易于处理。事实证明,这在它们的中央应用中非常有用,即在接收器中进行信号过采样的数字通信中的信道均衡。在这种情况下,一种良好的信道均衡器可以帮助抵消由于信道传播而引入的信号失真,但又不以牺牲信道噪声为代价。在本文的第二部分,我们着眼于另一类多速率系统,为了在数据流中引入冗余,在发射机侧使用了“冗余”。这种冗余通常通过在传输信号上强制某些结构来促进均衡过程。我们首先考虑以循环前缀形式引入冗余的传输系统。这种系统的示例包括离散多音(DMT)和正交频分复用(OFDM)系统。我们研究了此类系统中的信号预编码,旨在通过最小化接收器的噪声功率来提高性能。我们还考虑了另一类具有信号冗余的通信系统,即基于码分多址(CDMA)的多用户系统。我们特别关注称为“相互正交用户代码接收器”(AMOUR)的特殊类型的CDMA系统。我们展示了如何从此类系统中的零迫解类中找到最佳均衡器,然后通过在接收器处采用替代采样策略来增加此类的大小。

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    Vrcelj Bojan;

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  • 年度 2004
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