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Design and analysis of ultra-wide bandwidth impulse radio receiver.

机译:超宽带脉冲无线电接收机的设计与分析。

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摘要

The wireless system is being rapidly proliferated in our life. The growing of capacity in wireless communication requires a new type of wireless communication method which does not effect current systems. A new system that fulfills this requirement is the Ultra-Wide bandwidth (UWB) impulse radio. In addition, the UWB system also promises low power, covert communication, and very high processing gain. In this dissertation, an UWB system which can lead this next generation of communications of an UWB radio is introduced.; In this work, the complete front-end of an UWB radio and its components are described in a detailed analysis. The main focus of this work is the design of the UWB system's wide-bandwidth components.; In the course of this dissertation, the UWB system, its UWB signal properties and its possible system architecture are described. Based on these system characteristics, required RF components are designed with IBM's Silicon Germanium (SiGe) 0.5 μm process and analyzed. Using this technology, the two important front-end functions highlighted in this work are signal amplification for wide-bandwidth and correlation detection of the signal.; Theoretical investigation of the conventional front-end components illustrates deficiencies of current technologies that frustrate the wide-bandwidth design task. Along with these investigations, possible solutions for wide-bandwidth components design are provided.; As final goals of this dissertation, the new UWB system design has been constructed with a sinusoidal correlator template, and a wide-bandwidth LNA and mixer have been designed. The LNA achieves 0.8 GHz bandwidth, 8.4 dB flat gain over its frequency range, 3 dB noise figure and −6 dBm dynamic range with shunt-series feedback topology. The mixer achieves 13 dB conversion gain, 15 dB noise figure and −6.3 dB dynamic range using the CS-CG pair as the mixer's transconductance.
机译:无线系统正在我们的生活中迅速扩散。无线通信容量的增长要求一种新型的无线通信方法,该方法不影响当前的系统。满足此要求的新系统是超宽带(UWB)脉冲无线电。此外,UWB系统还保证了低功耗,隐蔽通信和非常高的处理增益。本文介绍了一种可以引领下一代UWB无线通信的UWB系统。在这项工作中,将在详细分析中描述UWB无线电的完整前端及其组件。这项工作的主要重点是UWB系统的宽带组件的设计。在本文的过程中,描述了UWB系统,其UWB信号特性及其可能的系统架构。根据这些系统特性,使用IBM的0.5微米硅锗(SiGe)工艺设计并分析所需的RF组件。使用这项技术,这项工作中突出的两个重要的前端功能是用于宽带的信号放大和信号的相关检测。对常规前端组件的理论研究表明,现有技术的不足使宽带设计任务受挫。除了这些研究,还提供了宽带组件设计的可能解决方案。作为本文的最终目标,采用正弦相关器模板构建了新的UWB系统设计,并设计了宽带LNA和混频器。 LNA具有并联系列反馈拓扑结构,可实现0.8 GHz带宽,其频率范围内的8.4 dB平坦增益,3 dB噪声系数和-6 dBm动态范围。使用CS-CG对作为混频器的跨导,混频器可实现13 dB的转换增益,15 dB的噪声系数和−6.3 dB的动态范围。

著录项

  • 作者

    Lee, Sangyoub.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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