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Performance Analysis of Radar Eigenwaveform Design Integrated with Pulse Compression Scheme

机译:结合脉冲压缩方案的雷达特征波形设计性能分析

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In this research, we present a novel method to prpocess extended targets with the combination of eigenwaveform and pulse compression. Three different target versions of spinning, un-spinning, and complex are included and analyzed with their return energy scale. It is proven that the frequency band match is the decisive factor toward radar return energy. The hardware limitation of transmit power is also discussed. The eigenwaveform do have disadvantage in transmit power than rectangular waveform. However, the frequency band match is still the decisive factor in various target types comparison. Lastly, the identification probabilities of two versions of probability weighted eigenwaveform and wideband waveform are shown. The pulse compression gain do significantly increase the identification performance and the redundant terms degrade of two eigenwaveform methods deceased.
机译:在这项研究中,我们提出了一种将特征波形和脉冲压缩相结合来处理扩展目标的新方法。包括旋转,不旋转和复杂的三种不同目标版本,并通过其返回能量规模进行分析。事实证明,频段匹配是决定雷达回波能量的决定性因素。还讨论了发射功率的硬件限制。本征波形在发射功率上确实比矩形波形有缺点。但是,频带匹配仍然是各种目标类型比较中的决定性因素。最后,给出了概率加权特征波形和宽带波形两个版本的识别概率。脉冲压缩增益确实大大提高了识别性能,并且冗余项降低了已故的两种本征波形方法。

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