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TV White Space and Broadband Power Line Communications for Indoor High Speed Networks

机译:室内高速网络的电视空白空间和宽带电力线通信

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摘要

Current indoor networks have growing data rate demands to satisfy high speed applications. Broadband power line communications (BPLC) and TV white space (TVWS) communications are considered as effective solutions for indoor networks. However, they encounter several challenges concerning coexistence with wireless services. In this thesis, cooperative BPLC and TVWS is investigated in the very high frequency (VHF) band, for the aim of complementing each other to deliver enhanced performance. The main contributions of the thesis are multi-folds. In the first contribution, a general statistical based path loss mapping (GSBPL) approach is proposed for modelling the path loss of indoor low voltage (i.e. 220 v) BPLC. Also, a simplification method is proposed for computing the channel transfer function, which is proved to be more general and computationally more efficient than the previous method in literature. The feasibility of the cooperation between BPLC and wireless communications is thus concluded, through comparing their corresponding path losses. In the second contribution, a general model is proposed to map the TVWS interference with the BPLC in the VHF band, through exciting antenna mode currents along low voltage BPLC cables. A new model is presented for current conversion from antenna to differential mode, which includes a general formula for the antenna mode characteristic impedance and two solutions to the formulated problem: a) a numerical solution referred to as the antenna theory numerical (ATN) approach; b) an analytical solution referred to as the enhanced TL approximation (ETLA) approach. This is the first reported work to obtain the antenna mode characteristic impedance by the antenna theory. The ETLA approach outperforms the previous frequency-independent solution and requires a reduced complexity over the ATN approach. In the third contribution, new hybrid systems utilising BPLC and TVWS are proposed in the VHF band referred to as white BPLC (WBPLC). Two cases are considered in the proposed system: a) point-to-point WBPLC multiple-input multiple-output (MIMO) system, where a power allocation algorithm and an iterative precoding technique are proposed to maximise the ergodic capacity, subject to the constraints of total power and interference limit at the TV primary user (PU) receiver (Rx); b) point-to-multipoint WBPLC MIMO system. The overall network downlink capacity maximisation problem is investigated, using an efficient algorithm for power and subcarrier allocation among different users.
机译:当前的室内网络对数据速率的需求不断增长,以满足高速应用的需求。宽带电力线通信(BPLC)和电视空白(TVWS)通信被认为是室内网络的有效解决方案。但是,它们遇到了与无线服务共存的若干挑战。本文以超高频(VHF)频段为研究对象,对BPLC和TVWS进行协作研究,以相互补充以提供增强的性能。论文的主要贡献是多方面的。在第一篇论文中,提出了一种基于统计的通用路径损耗映射(GSBPL)方法,用于对室内低压(即220 v)BPLC的路径损耗进行建模。此外,提出了一种简化的方法来计算信道传递函数,与文献中的先前方法相比,该方法被证明更为通用且计算效率更高。通过比较BPLC和无线通信的相应路径损耗,得出了BPLC与无线通信之间进行协作的可行性。在第二个贡献中,提出了一个通用模型,该模型通过沿低压BPLC电缆激励天线模式电流来绘制VWS波段中BWS的TVWS干扰。提出了一种用于从天线到差模的电流转换的新模型,该模型包括天线模式特征阻抗的一般公式和所提出问题的两个解决方案:a)称为天线理论数值(ATN)方法的数值解决方案; b)一种分析解决方案,称为增强TL近似(ETLA)方法。这是首次通过天线理论获得天线模式特性阻抗的工作。 ETLA方法优于以前的频率独立解决方案,并且要求比ATN方法降低复杂性。在第三项贡献中,提出了在VHF频段中使用BPLC和TVWS的新型混合系统,称为白BPLC(WBPLC)。在提出的系统中考虑了两种情况:a)点对点WBPLC多输入多输出(MIMO)系统,其中提出了一种功率分配算法和迭代预编码技术,以在满足约束条件的情况下最大化遍历容量电视主要用户(PU)接收器(Rx)的总功率和干扰限制; b)点对多点WBPLC MIMO系统。使用有效的算法在不同用户之间分配功率和子载波,研究了整个网络的下行链路容量最大化问题。

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    Heggo MA;

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  • 年度 2017
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