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On distributed coding, quantization of channel measurements and faster-than-Nyquist signaling.

机译:在分布式编码中,信道测量的量化和比奈奎斯特信令快。

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摘要

This dissertation considers three different aspects of modern digital communication systems and is therefore divided in three parts.; The first part is distributed coding. This part deals with source and source-channel code design issues for digital communication systems with many transmitters and one receiver or with one transmitter and one receiver but with side information at the receiver, which is not available at the transmitter. Such problems are attracting attention lately, as they constitute a way of extending the classical point-to-point communication theory to networks. In this first part of this dissertation, novel source and source-channel codes are designed by converting each of the considered distributed coding problems into an equivalent classical channel coding or classical source-channel coding problem. The proposed schemes come very close to the theoretical limits and thus, are able to exhibit some of the gains predicted by network information theory.; In the other two parts of this dissertation classical point-to-point digital communication systems are considered. The second part is quantization of coded channel measurements at the receiver. Quantization is a way to limit the accuracy of continuous-valued measurements so that they can be processed in the digital domain. Depending on the desired type of processing of the quantized data, different quantizer design criteria should be used. In this second part of this dissertation, the quantized received values from the channel are processed by the receiver, which tries to recover the transmitted information. An exhaustive comparison of several quantization criteria for this case are studied providing illuminating insight for this quantizer design problem.; The third part of this dissertation is faster-than-Nyquist signaling. The Nyquist rate in classical point-to-point bandwidth-limited digital communication systems is considered as the maximum transmission rate or signaling rate and is equal to twice the bandwidth of the channel. In this last part of the dissertation, we question this Nyquist rate limitation by transmitting at higher signaling rates through the same bandwidth. By mitigating the incurred interference due to the faster-than-Nyquist rates, gains over Nyquist rate systems are obtained.
机译:本文考虑了现代数字通信系统的三个不同方面,因此分为三个部分。第一部分是分布式编码。本部分涉及具有多个发射机和一个接收机,或者具有一个发射机和一个接收机,但在接收机处具有辅助信息的数字通信系统的源和源信道代码设计问题,而在发射机中则没有这些辅助信息。这些问题最近引起了人们的注意,因为它们构成了将经典的点对点通信理论扩展到网络的一种方式。在本论文的第一部分中,通过将每个考虑的分布式编码问题转换为等效的经典信道编码或经典源信道编码问题,设计了新颖的源代码和源信道代码。所提出的方案非常接近理论极限,因此能够展现出网络信息理论所预测的一些收益。在本文的其他两个部分中,考虑了经典的点对点数字通信系统。第二部分是接收机中编码信道测量的量化。量化是一种限制连续值测量准确性的方法,以便可以在数字域中对其进行处理。根据所需的量化数据处理类型,应使用不同的量化器设计标准。在本论文的第二部分,接收机对来自信道的量化接收值进行处理,接收机试图恢复所发送的信息。研究了针对这种情况的几种量化标准的详尽比较,为该量化器设计问题提供了启发性的见识。本文的第三部分是比奈奎斯特信令快。经典点对点带宽受限的数字通信系统中的奈奎斯特速率被认为是最大传输速率或信令速率,并且等于信道带宽的两倍。在本文的最后一部分,我们通过以相同的带宽以较高的信令速率进行传输来质疑这种奈奎斯特速率限制。通过减轻由于比奈奎斯特速率快而引起的干扰,可以获得超过奈奎斯特速率系统的增益。

著录项

  • 作者

    Liveris, Angelos Dimitriou.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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