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Digitally-Assisted RF-Analog Self Interference Cancellation for Wideband Full-Duplex Radios

机译:宽带全双工无线电的数字辅助RF模拟自干扰消除

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摘要

The ever-increasing demand for more data from users is pushing the development of alternative wireless technologies to improve upon network capacity. Full-Duplex radios provide an exciting opportunity to theoretically double the available spectral efficiency of wireless networks by simultaneously transmitting and receiving signals in the same frequency band. The main challenge that is presented in the implementation of a full-duplex radio is the high power transmitter leaking to the sensitive receiver chain and masking the desired receive signal to be decoded. This transmitter leakage is referred to as self interference and it is required that this self interference signal be cancelled below the receiver noise floor to achieve the full benefits of a full-duplex radio. Cancellation of the self interference signal is realized through several techniques, categorized as passive suppression, digital cancellation, and analog cancellation. These methods all have their challenges in achieving the full amount of cancellation necessary and therefore all three techniques are typically employed in the system. In this thesis, a novel digitally assisted radio frequency (RF) analog self interference canceller is proposed to suppress the self interference signal before the receiver chain for wide modulation bandwidth signals. This canceller augments minimum complexity RF-analog interference cancellation hardware that uses an RF vector multiplier in combination with a flexible digital rational function finite impulse response filter. The simple topology reduces the number of impairments added to the system through the analog components and identifies the parameters of the proposed filter in a deterministic and single iteration algorithm. The hardware proof-of-concept prototype is built using off-the-shelf RF-analog components and demonstrates excellent cancellation performance. Using four TX test signals with modulation bandwidths of 20~MHz, 40~MHz, 80~MHz, and 120~MHz, the self interference canceller achieves a minimum of 50~dB, 47~dB, 42~dB, and 40~dB of cancellation respectively. This thesis reviews the previously proposed self interference cancellation topologies, system non-idealities that provide challenges for full-duplex implementation, and the realization of the proposed RF-analog self interference canceller.
机译:用户对更多数据的不断增长的需求推动了替代无线技术的发展,以提高网络容量。全双工无线电提供了一个令人兴奋的机会,可以通过在同一频带中同时发送和接收信号,从理论上将无线网络的可用频谱效率提高一倍。在全双工无线电的实现中提出的主要挑战是高功率发射机泄漏到敏感的接收机链并掩盖了要解码的所需接收信号。这种发射机泄漏被称为自干扰,并且要求在接收机本底噪声以下消除这种自干扰信号,以实现全双工无线电的全部优点。自干扰信号的消除是通过几种技术实现的,分为无源抑制,数字消除和模拟消除。这些方法在实现所需的全部取消量方面都面临挑战,因此通常在系统中采用所有三种技术。本文提出了一种新型的数字辅助射频(RF)模拟自干扰消除器,以抑制宽调制带宽信号在接收机链之前的自干扰信号。该消除器增加了最小复杂度的RF模拟干扰消除硬件,该硬件将RF向量乘法器与灵活的数字有理函数有限脉冲响应滤波器结合使用。简单的拓扑结构减少了通过模拟组件添加到系统中的损伤数量,并以确定性和单次迭代算法标识了所提出的滤波器的参数。硬件概念验证原型是使用现成的RF模拟组件构建的,并具有出色的抵消性能。使用四个调制带宽分别为20〜MHz,40〜MHz,80〜MHz和120〜MHz的TX测试信号,自干扰消除器可实现最小值50〜dB,47〜dB,42〜dB和40〜dB分别取消。本文回顾了先前提出的自干扰消除拓扑,为全双工实施带来挑战的系统非理想性以及所提出的RF模拟自干扰消除器的实现。

著录项

  • 作者

    King Kimberley Brynn;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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