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The design of CMOS impulse generators for ultra-wideband communication and radar systems.

机译:用于超宽带通信和雷达系统的CMOS脉冲发生器的设计。

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摘要

Impulse generators play an important role in the ultra-wideband (UWB) systems. Particularly in the transmitter, impulse generator performs an interface between input data and the antenna determining the overall performance of the transmitter. After the federal communication commission (FCC) revised the rules for UWB systems usages, the design of impulse generators has been pursued and yet challenging especially using CMOS technology.;In this dissertation, three impulse generators are presented with analytical explanations, simulations, and measurements. First, the design and simulation of an impulse generator using TSMC 0.18 microm CMOS technology is presented. The operating frequency band of the impulse generator is from 3.1 to 10.6 GHz for the application of UWB communications. The structure of the impulse generator is based on the current-steering digital-to-analog converter (DAC). The impulse generator has the feature of high-tunability and easy adoption of modulations. The simulation results show that the output of the impulse generator complies with the FCC regulations and has a power consumption of 27 mW at a 50 MHz pulse repetition frequency. Secondly, an impulse generator using IBM 90 nm CMOS technology for the application of 3.1 to 10.6 GHz UWB systems is proposed. The impulse generator has a simplex architecture using novel digital circuits and a compact passive band-pass filter (BPF). The measurement results show great consistency with the simulation results. The impulse generator has a center frequency of 5.8 GHz and consumes an average power of 0.9 mW at 200 MHz pulse repetition frequency. Finally, an impulse generator using TSMC 0.13 microm CMOS technology is presented. The operating frequency band of the transmitter is from 22 to 29 GHz for the application of UWB vehicular short-range radar (SRR). The proposed design has a pulse-modulated carrier-based architecture. The simulation results show that the power spectral density of the impulse generator output complies with the FCC regulation with a center frequency tuning range of 800 MHz. The maximum achievable output swing is 1.14 V. The measurement results also show the uniformity with simulation results verifying the work.
机译:脉冲发生器在超宽带(UWB)系统中起着重要作用。特别是在发射机中,脉冲发生器执行输入数据和天线之间的接口,以确定发射机的整体性能。联邦通信委员会(FCC)修改了UWB系统的使用规则后,就进行了脉冲发生器的设计,但特别是在使用CMOS技术的情况下仍然具有挑战性。本论文介绍了三种脉冲发生器,并进行了分析,仿真和测量分析。首先,介绍了采用台积电0.18微米CMOS技术的脉冲发生器的设计和仿真。脉冲发生器的工作频带在3.1至10.6 GHz之间,适用于UWB通信。脉冲发生器的结构基于电流控制的数模转换器(DAC)。脉冲发生器具有高可调性和易于采用调制的特点。仿真结果表明,脉冲发生器的输出符合FCC规定,在50 MHz脉冲重复频率下的功耗为27 mW。其次,提出了一种使用IBM 90 nm CMOS技术的脉冲发生器,用于3.1至10.6 GHz UWB系统的应用。脉冲发生器具有采用新型数字电路和紧凑型无源带通滤波器(BPF)的单工架构。测量结果与仿真结果具有很好的一致性。脉冲发生器的中心频率为5.8 GHz,在200 MHz脉冲重复频率下的平均功率为0.9 mW。最后,提出了一种采用台积电0.13微米CMOS技术的脉冲发生器。对于UWB车载短程雷达(SRR)的应用,发射机的工作频带为22至29 GHz。提出的设计具有基于脉冲调制载波的架构。仿真结果表明,脉冲发生器输出的功率谱密度符合FCC规定,中心频率调谐范围为800 MHz。最大可实现的输出摆幅为1.14V。测量结果还显示出均匀性,仿真结果验证了该工作。

著录项

  • 作者

    Li, Ju-Ching.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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