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Autonomous Infrastructure Based Multihop Cellular Networks.

机译:基于自治基础架构的多跳蜂窝网络。

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摘要

In a multihop cellular network, mobile terminals have the capability to transmit directly to other mobile terminals enabling them to use other terminals as relays to forward traffic towards the base station. Previous studies of networks consisting of a single cell found that the SINR in a multihop cellular network is slightly lower than in a traditional cellular network. However, multihop cellular networks may have a higher capacity than traditional cellular networks due to their potential for lower intercell interference. For this reason, the effects of intercell interference are investigated in this thesis. Our simulations of a network with many cells show that multihop cellular networks have a higher SINR than traditional cellular networks due to the near elimination of intercell interference.;Access points require parameters like their transmission range to be adjusted autonomously to optimal levels. In this thesis, we propose an autonomous pilot power protocol. Our results show that by adjusting a parameter within the protocol, a required coverage level of terminals can be specified and achieved without knowledge of the location or density of mobile terminals. Furthermore, we show that the protocol determines the transmission range that is optimal in terms of SINR and power consumption that achieves the required coverage while effectively eliminating the bottleneck that existed at the base station.;However, multihop cellular networks still suffer from large amounts of interference surrounding the base station because all traffic either emanates or is destined to the base station making it the capacity bottleneck. To resolve this problem, we propose a novel architecture called the autonomous infrastructure multihop cellular network where users can connect their mobile terminals to the backbone network giving them the functionality of an access point. Access points receive traffic from other terminals and send it directly onto the backbone, as would a base station. This reduces the traffic handled by the base station and increases network capacity. Our analysis and simulations show that in autonomous infrastructure multihop cellular networks, the SINR at the base station is higher, the power consumption is lower and the coverage is better than in normal multihop cellular networks.
机译:在多跳蜂窝网络中,移动终端具有直接发送给其他移动终端的能力,从而使它们能够将其他终端用作中继来向基站转发业务。对由单个小区组成的网络的先前研究发现,多跳蜂窝网络中的SINR略低于传统蜂窝网络中的SINR。但是,由于多跳蜂窝网络具有降低小区间干扰的潜力,因此它们可能比传统蜂窝网络具有更高的容量。因此,本文研究了小区间干扰的影响。我们对具有许多小区的网络的仿真表明,由于几乎消除了小区间干扰,多跳蜂窝网络的SINR比传统蜂窝网络高。接入点要求像其传输范围之类的参数能够自动调整到最佳水平。在本文中,我们提出了一种自主的飞行员功率协议。我们的结果表明,通过调整协议中的参数,可以指定并实现所需的终端覆盖级别,而无需了解移动终端的位置或密度。此外,我们表明该协议确定了在SINR和功耗方面均达到最佳覆盖范围的有效传输范围,同时可以有效消除基站中存在的瓶颈;然而,多跳蜂窝网络仍遭受大量基站周围的干扰,因为所有业务都发往或发往基站,这使其成为容量瓶颈。为了解决此问题,我们提出了一种称为自治基础设施多跳蜂窝网络的新颖体系结构,其中用户可以将其移动终端连接到骨干网络,从而为他们提供接入点的功能。接入点从其他终端接收流量,并将其直接发送到骨干网,就像基站一样。这减少了基站处理的流量并增加了网络容量。我们的分析和仿真表明,与普通的多跳蜂窝网络相比,在自治基础设施多跳蜂窝网络中,基站的SINR更高,功耗更低,覆盖范围更好。

著录项

  • 作者

    DeFaria, Mark.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:01

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