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Photonic synthesis and hardware correlations of ultrabroadband radio-frequency waveforms and power spectra via optical pulse shaping.

机译:通过光脉冲整形的超宽带射频波形和功率谱的光子合成和硬件相关性。

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摘要

Interest has rapidly increased in the area of microwave photonics. Current interest in ultrawideband (UWB) communication wireless system also motivates novel techniques for arbitrary electrical waveform generation. Within the Federal Communications Commission (FCC)-specified frequency band of 3.1-10.6 GHz, UWB systems employ short bursts of radiation to achieve material penetration as well as to mitigate multipath interference in communications applications.;We presented an open-loop reflection-mode dispersive Fourier Transform (FT) optical pulse shaping technique for generation of broadband sinusoidal and ultra-broadband impulsive radio-frequency (RF) waveforms in the ranges of 1-10 GHz aiming at applications in UWB wireless communication. This open-loop technique provides the means to rapidly prototype UWB wireless systems by providing real-time waveform design capability---an ability not offered by current electronic techniques. Through appropriate optical waveform design, we showed direct control over the shape of the RF spectrum which enables us to tailor our RF waveforms to conform to the low-power UWB spectral criteria. In addition, we also investigated RF power spectrum design by using the Gerchberg-Saxton (GS) algorithm. This optimization scheme calculates the temporal waveforms associated with the target spectral shapes, which are implemented by synthesizing these waveforms via our optical pulse shaping techniques.;Photonic techniques for generation and correlation processing of UWB RF waveforms may serve as enablers for novel wireless UWB schemes including laboratory tests of wireless Ultrawideband- Code Division Multiple Access (UWB-CDMA), which have recently been theoretically analyzed but not been implemented due to lack of waveform generation and processing hardware capable of covering a large fraction of the UWB band.;To illustrate the capability of ultrawideband correlation detection, we demonstrate hardware auto/cross- correlation measurements of photonically generated ultrawideband RF burst waveforms in the 3-10 GHz range. Full delay dependent correlation studies with matched waveform pairs reveal correlation peaks ∼ 15dB above those obtained with non-matching sets of waveforms. The possibility of real-time correlation detection is also explored, as are correlation measurements of waveforms that are transmitted over a short line-of-sight wireless link. With waveforms modified to precompensate for antenna dispersion, 7 dB correlation contrast between matched and non-matched waveform pairs is obtained. Our results suggest hardware correlation detection as a possibility for processing of arbitrary waveforms in an UWB receiver.
机译:对微波光子学领域的兴趣迅速增加。当前对超宽带(UWB)通信无线系统的兴趣也激发了用于产生任意电波形的新颖技术。在联邦通信委员会(FCC)指定的3.1-10.6 GHz频带内,UWB系统采用短脉冲辐射来实现材料穿透并减轻通信应用中的多径干扰。我们提出了一种开环反射模式。色散傅里叶变换(FT)光脉冲整形技术,用于产生1-10 GHz范围内的宽带正弦波和超宽带脉冲射频(RF)波形,旨在用于UWB无线通信中。这种开环技术通过提供实时波形设计功能提供了快速建立UWB无线系统原型的方法,而这种能力是当前电子技术无法提供的。通过适当的光波形设计,我们显示了对RF频谱形状的直接控制,这使我们能够定制RF波形以符合低功率UWB频谱标准。此外,我们还使用Gerchberg-Saxton(GS)算法研究了射频功率谱设计。该优化方案计算与目标频谱形状相关的时间波形,这些时间波形是通过我们的光脉冲整形技术通过合成这些波形而实现的;用于产生和相关处理UWB RF波形的光子技术可以用作新型无线UWB方案的促成因素,包括无线超宽带码分多址(UWB-CDMA)的实验室测试,最近在理论上进行了分析,但由于缺乏波形生成和能够覆盖大部分UWB频段的处理硬件而未能实施。具有超宽带相关检测功能,我们演示了在3-10 GHz范围内光子产生的超宽带RF突发波形的硬件自动/互相关测量。对匹配波形对进行的完全依赖于延迟的相关性研究表明,相关峰比不匹配波形组高出约15dB。还探讨了实时相关检测的可能性,以及通过短视距无线链路传输的波形的相关测量。通过修改波形以预补偿天线色散,可以在匹配和不匹配波形对之间获得7 dB的相关对比度。我们的结果表明,硬件相关性检测是在UWB接收机中处理任意波形的可能性。

著录项

  • 作者

    Lin, Ingrid Shihting.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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