Direct digital synthesis applications for radar development

E. Adler, E. Viveiros, T. Ton, J. Kurtz, M. C. Bartlett
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引用次数: 35

Abstract

A chirp synthesizer promises to have a great impact on waveform generation and local oscillator (LO) configurations for next-generation radar architectures. The flexibility in waveform control provided by the synthesizer offers the potential for improved radar performance. The synthesizer allows the generation of waveforms with a wide range of carrier frequencies, chirp rate, pulse widths, and pulse repetition frequencies. The variation of these parameters allows the radar to transmit different waveforms to achieve various missions such as target acquisition, tracking, or classification. The synthesizer's flexible waveform control provides a means for motion compensation, reducing ambiguities, and correction of nonlinearities in the transceiver's frequency response. Waveform distortion due to propagation path and component and signal processor errors can also be reduced by application of the synthesizer to perform certain error correction techniques. These features are realized in a small lightweight package that can be utilized in various radar scenarios. The paper discusses the salient features of the new chirp synthesizer and its application in various radar configurations.
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直接数字合成应用于雷达发展
啁啾合成器有望对下一代雷达架构的波形产生和本振(LO)配置产生重大影响。由合成器提供的波形控制的灵活性为改进雷达性能提供了潜力。该合成器允许产生具有宽范围载波频率、啁啾率、脉冲宽度和脉冲重复频率的波形。这些参数的变化允许雷达传输不同的波形来实现各种任务,例如目标捕获、跟踪或分类。合成器灵活的波形控制提供了一种运动补偿的手段,减少了模糊性,并校正了收发器频率响应中的非线性。由于传播路径和分量和信号处理器错误造成的波形失真也可以通过应用合成器来执行某些纠错技术来减少。这些功能都是在一个小而轻的封装中实现的,可以在各种雷达场景中使用。本文讨论了新型啁啾合成器的特点及其在各种雷达配置中的应用。
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