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Energy-Efficient, Short-Range Ultra-Wideband Radio Transceivers.

机译:节能,短距离超宽带无线电收发器。

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摘要

Short-range wireless communications continually attract interest from both industry and academia, and it is changing our life in every aspect in the last decade. The design of wireless transceivers is the bottleneck for a variety applications, due to RF modeling inaccuracy, stringent FCC regulations over the transmitted power spectrum, interference, multi-path reflections, modulation scheme, receiver sensitivity, and synchronization. In addition, energy efficiency is always one of the most important design goals. Ultra-Wideband (UWB) is found to be very energy-efficient due to its low duty cycle and potentially high data rate due to its wide bandwidth. However, there still remain unsolved issues with UWB transceivers, such as pulse shaping, multi-path reflections, and receiver clock synchronization.;To address these, novel techniques such as wireless multi-path equalization, pulse injection-locking for receiver clock synchronization, reconfigurable pulse shaping, low power wireless clock distribution, and an ultra-low-power superregenerative receiver are implemented and verified on silicon. Three chips are designed and verified: a 3--5GHz Impulse-Radio (IR) UWB transceiver, a 3--60GHz all digital reconfigurable transmitter, and a 402--405MHz MICS/UWB(Sub-GHz) super-regenerative receiver incorporating wireless clock synchronization. An detailed design methodology, measurement results, and discussions are presented.
机译:短距离无线通信不断吸引着工业界和学术界的兴趣,并且在过去十年中,它正在改变我们生活的方方面面。由于射频建模的不准确性,对发射功率谱的严格FCC法规,干扰,多径反射,调制方案,接收器灵敏度和同步性,无线收发器的设计成为各种应用的瓶颈。此外,能源效率始终是最重要的设计目标之一。超宽带(UWB)由于其低占空比和宽带宽而具有很高的数据速率,因此非常节能。但是,UWB收发器仍然存在未解决的问题,例如脉冲整形,多路径反射和接收器时钟同步。为了解决这些问题,新技术,例如无线多路径均衡,用于接收器时钟同步的脉冲注入锁定,可重配置脉冲整形,低功耗无线时钟分配以及超低功耗超再生接收器均在硅片上实现并验证。设计并验证了三种芯片:一个3--5GHz脉冲无线电(IR)UWB收发器,一个3--60GHz全数字可重新配置发射机,以及一个合并了402--405MHz MICS / UWB(Sub-GHz)的超再生接收机无线时钟同步。介绍了详细的设计方法,测量结果和讨论。

著录项

  • 作者

    Hu, Changhui.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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