宽带波形失真与补偿技术

M. Belcher, R. Howard, M. Mitchell
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引用次数: 6

摘要

总结了范围旁瓣源、波形调制和补偿技术,重点介绍了与大时间带宽积波形相关的实现问题。以前的工作已经解决了线性调频和双相编码波形的特定宽带相控阵雷达设计问题。作者将这些努力扩展到包括系统误差表征要求和预失真/后处理补偿技术权衡。根据相应的误差调制叠加在期望的雷达波形上,对硬件误差进行建模。研究了由频率相关的信道间增益/相位延迟变化和加性噪声效应造成的确定性和非确定性硬件误差。针对特定的波形类别检查性能度量。描述了天线方向图和误差调制之间的相互作用以及相关的系统级影响。结果表明,通过补偿技术可以抑制确定性误差分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wideband waveform distortion and compensation techniques
Range sidelobes sources, waveform modulation, and compensation techniques are summarized, with emphasis on implementation issues associated with large time-bandwidth product waveforms. Previous efforts have addressed specific wideband phased-array-radar design issues for linear frequency modulation and biphase coded waveforms. The authors extend these efforts to include system error characterization requirements and predistortion/postprocessing compensation technique tradeoffs. Hardware errors are modeled in terms of the corresponding error modulation superimposed on the desired radar waveforms. Deterministic and nondeterministic hardware error imposed by frequency-dependent interchannel gain/phase-delay variation and additive noise effects is examined. Performance measures are examined for specific waveform classes. The interaction between antenna pattern and error modulation is described along with the associated system-level impacts. It is shown that deterministic error components can be suppressed via compensation techniques.<>
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