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Spectral and spatial diversity measurements in the Mumma Radar Lab

机译:Mumma Radar Lab中的光谱和空间分集测量

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Due to rapid advancement in algorithms, high performance computing, digital electronics, and RF (radio frequency) hardware, the design of modern radar now incorporates both spectral and spatial diversity .Driving the state-of-the-art is shared-spectrum waveforms for the co-design of radar, communication and navigation systems, as well as thin spectrum and multiband signals. Spatially diverse multi-static radar, including RF Tomography [1], MIMO (multiple-input multiple-output) and DAR (distributed aperture radar) [2] are already emerging in the field. Calibration is challenging in traditional radar, and even more so in spectrally and spatially diverse systems. Instrumentation radar measurements are time consuming and costly. This paper proposes an alternative approach to the traditional sensor measurements that demand a quite zone in an anechoic chamber or an isolated outdoor radar range. Research in the MRL (Mumma Radar Lab) is currently focused on ISAR (inverse synthetic aperture radar), GPR (ground penetrating radar) and RF Tomography, all under calibrated conditions.
机译:由于算法的快速进步,高性能计算,数字电子产品和RF(射频)硬件,现代雷达的设计现在包括光谱和空间分集。驱动最先进的共享 - 频谱波形雷达,通信和导航系统的共同设计,以及薄频谱和多频带信号。空间多样化的多静态雷达,包括RF断层扫描[1],MIMO(多输入多输出)和DAR(分布式孔径雷达)[2]在该领域已经出现。校准在传统的雷达中具有挑战性,甚至在光谱和空间多样化的系统中更具困难。仪表雷达测量是耗时和昂贵的。本文提出了一种传统传感器测量的替代方法,这些方法需要在化学腔室或隔离的户外雷达范围内需要一个相当的区域。 MRL(Mumma Radar Lab)的研究目前专注于ISAR(逆合成孔径雷达),GPR(地面穿透雷达)和RF层析术,所有这些都在校准条件下。

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