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Novel acousto-optic systems for spectrum analysis and phased array radar signal processing.

机译:用于频谱分析和相控阵雷达信号处理的新型声光系统。

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摘要

Novel acousto-optic systems for spectrum analysis and phased array radar signal processing are proposed. The pulsed source 2-D multiplicative time and space integrating spectrum analyzer is proposed and experimentally demonstrated. This architecture is simpler, physically smaller, and less sensitive to mechanical vibrations than the pulsed source 2-D additive Mach-Zehnder interferometer based spectrum analyzer. Simple and compact optical disk based systems for 1-D and 2-D spectrum analysis are presented. The high data packing density, angular motion, and parallel read out capability of optical disks is uniquely exploited to generate the very high time bandwidth product reference signals required for temporal spectrum analysis, that are otherwise difficult to generate using electronics. A continuous wave 1-D time integrating disk spectrum analyzer is successfully demonstrated in the laboratory. The limited dynamic range due to huge bias levels in interferometric time integrating processors is alleviated by using photorefractive crystals as real time bias removers. Continuous wave 1-D and 2-D bias free acousto-optic architectures for spectrum analysis are theoretically and experimentally investigated from a systems viewpoint.; Simple, compact, and powerful acousto-optic systems for control and signal processing in phased array radars are proposed that eliminate many system components like phase shifters, mixers, power dividers, and complex antenna feed networks, that are encountered in typical electronically controlled phased array radars. Via a single control parameter, namely frequency, the optical technique provides appropriately phased signals for transmission and reception in phased array antennas. The system is capable of continuous beam scanning, simultaneous multiple beam formation, and multi-target tracking, and can be integrated on a substrate to provide smaller and lighter phased array radars. Also, the system is resistant to electromagnetic interference (EMI), and signal phase shifts are independent of the radar carrier frequency employed. A 1-D linear phased array radar acousto-optic beam steerer is successfully demonstrated in the laboratory, and performance issues such as detector phase sampling error and phase linearity are highlighted. The linear array design is extended to planar and multiple linear arrays.
机译:提出了用于频谱分析和相控阵雷达信号处理的新型声光系统。提出并实验证明了脉冲源二维乘时空积分频谱分析仪。与基于脉冲源的二维附加Mach-Zehnder干涉仪的频谱分析仪相比,该体系结构更简单,物理尺寸更小,并且对机械振动的敏感性更低。介绍了用于一维和二维光谱分析的基于光盘的简单而紧凑的系统。光盘的高数据打包密度,角运动和并行读取能力被独特地利用,以生成时间频谱分析所需的非常高的时间带宽乘积参考信号,否则这些信号很难使用电子设备生成。连续波一维时间积分盘谱分析仪在实验室中得到成功证明。通过使用光折射晶体作为实时偏置消除器,可以缓解由于干涉时间积分处理器中巨大的偏置水平而导致的有限动态范围。从系统的角度,从理论和实验上研究了用于频谱分析的连续波一维和二维无偏置声光架构。提出了用于相控阵雷达中的控制和信号处理的简单,紧凑且功能强大的声光系统,该系统消除了典型电控相控阵中遇到的许多系统组件,例如移相器,混频器,功率分配器和复杂的天线馈电网络。雷达。通过单个控制参数,即频率,光学技术为相控阵天线中的发送和接收提供了适当的相控信号。该系统能够进行连续束扫描,同时进行多束形成和多目标跟踪,并且可以集成在基板上以提供更小,更轻的相控阵雷达。而且,该系统具有抗电磁干扰(EMI)的能力,信号相移与所采用的雷达载波频率无关。一维线性相控阵雷达声光波束转向器已在实验室中成功演示,并突出了诸如检测器相位采样误差和相位线性度等性能问题。线性阵列设计扩展到平面和多个线性阵列。

著录项

  • 作者

    Riza, Nabeel Agha.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 304 p.
  • 总页数 304
  • 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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