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Performance Enhancement for Wireless Networks: Modulation, Clock Synchronization and Resource Management.

机译:无线网络的性能增强:调制,时钟同步和资源管理。

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摘要

Wireless networks become more and more important in modern information systems as the last mile/meter solutions, thanks to the flexibility of mobile access to facilitate Internet access anytime, anywhere. Given the limited resources, e.g., spectrum and energy supplies, to meet the ever increasing demand for wireless data services, new approaches are beckoned to enhance the spectrum and energy efficiency. We investigate this problem from three important aspects, digital modulation, clock synchronization and concurrent transmission scheduling. The contributions of this dissertation are four-fold.;First, we employ the cross-layer design to explore the spatial diversity and broadcast nature of wireless links and propose a novel network modulation scheme that can superpose the information bits of different priorities into one symbol. It offers a new dimension to improve the network throughput since we can flexibly configure the transmission according to the channels among transceivers. Moreover, it is compatible with the main-stream hardware and we just need a software upgrade to implement the idea.;Second, we propose modulation schemes based on hexagonal tiling, which is known to be the most compact way of two-dimensional regular tiling. In order to fully utilize the advantage of hexagonal constellation, we employ the non-binary error control coding since the number of constellation points of hexagonal constellation is not necessarily to be an integer power-of-two. The feasibility of these new modulation schemes is verified by the prototype system based on the software defined radio platform USRP2 and GNU Radio.;Third, to facilitate a wide range of wireless communications technologies and protocols, clock synchronization among several wireless devices is a fundamental requirement. We investigated this problem by tracing to the source of clock desynchronization, which is the clock skew. However, as shown by measurement results, the clock skew is not constant and related to the working temperature. We propose a novel clock skew estimation algorithm that can leverage the temperature information to accurately estimate the clock skew. Based on the estimation results, we propose a clock synchronization scheme that can directly remove the clock skew according to the working temperature.;Fourth, the traditional time-sharing based scheduling schemes usually schedule one transmission within certain area. The emerging broadband wireless devices can dynamically adjust the transmitted data rate according to the received signal to interference and noise ratio (SINR). Allowing concurrent transmissions may be more efficient, while optimal scheduling problem for concurrent transmissions is an NP-hard problem. We propose simple yet effective heuristic algorithms that can significantly improve the system throughput with moderate computational complexity.
机译:无线网络在现代信息系统中作为最后一英里/米的解决方案变得越来越重要,这要归功于移动访问的灵活性,以便随时随地实现Internet访问。鉴于有限的资源(例如频谱和能量供应)可以满足对无线数据服务不断增长的需求,因此呼吁采用新的方法来增强频谱和能量效率。我们从三个重要方面研究此问题,即数字调制,时钟同步和并发传输调度。本文的研究工作有四个方面。首先,我们采用跨层设计来探讨无线链路的空间分集和广播特性,并提出了一种新颖的网络调制方案,可以将不同优先级的信息比特叠加为一个符号。 。由于我们可以根据收发器之间的通道灵活配置传输,因此它提供了一个新的维度来提高网络吞吐量。此外,它与主流硬件兼容,我们只需要进行软件升级即可实现该想法。其次,我们提出了基于六角形平铺的调制方案,这是二维规则平铺的最紧凑方式。为了充分利用六角形星座的优点,我们采用非二进制误差控制编码,因为六角形星座的星座点的数目不必是整数的2的幂。通过基于软件定义的无线电平台USRP2和GNU Radio的原型系统,验证了这些新调制方案的可行性。第三,为了促进广泛的无线通信技术和协议,几个无线设备之间的时钟同步是基本要求。 。我们通过跟踪时钟不同步源(时钟偏斜)来研究此问题。但是,如测量结果所示,时钟偏斜不是恒定的,并且与工作温度有关。我们提出了一种新颖的时钟偏斜估计算法,该算法可以利用温度信息来准确估计时钟偏斜。根据估计结果,提出了一种时钟同步方案,可以根据工作温度直接消除时钟偏斜。第四,传统的基于分时的调度方案通常在一定区域内调度一次传输。新兴的宽带无线设备可以根据接收到的信噪比(SINR)动态调整发送的数据速率。允许并发传输可能更有效,而并发传输的最佳调度问题是NP难题。我们提出了简单而有效的启发式算法,该算法可以以适度的计算复杂性显着提高系统吞吐量。

著录项

  • 作者

    Yang, Zhe.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Engineering Computer.;Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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