Nonlinear radar via intermodulation of FM noise waveform pairs

Jonathan Owen, S. Blunt, K. Gallagher, Patrick M. McCormick, Chris Allen, K. Sherbondy
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引用次数: 14

Abstract

To take advantage of the unique scattering responses associated with nonlinear radar, the predominant approach involves the detection of target-induced harmonics elicited by the interrogation of a single spectrally pure waveform (often a tone). In contrast, we consider the impact of using a pair of high-dimensional waveforms to realize a novel nonlinear intermodulation approach. The interrogating waveforms in this case are two unique sets of FM noise waveforms that also permit the high incident power necessary to induce a nonlinear response. Both waveforms reside in the resonant region of the device under test, with their intermodulated response signal made sufficiently separable from the second-order harmonics of each individual waveform in the same band by virtue of very high dimensionality. This framework, collectively denoted as shared-spectrum pseudorandom intermodulation (SSPRInt), is demonstrated via simulation and experimentally in a loopback configuration.
调频噪声波形对互调非线性雷达
为了利用与非线性雷达相关的独特散射响应,主要的方法包括检测由单个频谱纯波形(通常是音调)引起的目标诱发谐波。相反,我们考虑了使用一对高维波形来实现一种新的非线性互调方法的影响。在这种情况下,询问波形是两组独特的调频噪声波形,它们也允许产生非线性响应所需的高入射功率。这两种波形都位于被测器件的谐振区,由于具有非常高的维数,它们的互调响应信号与同一频带中每个单独波形的二阶谐波充分分离。该框架统称为共享频谱伪随机互调(SSPRInt),通过模拟和实验在环回配置中进行了演示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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