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High-Resolution Radar Imaging Through a Pipe Via MUSIC and Compressed Sensing

机译:通过MUSIC和压缩传感通过管道进行高分辨率雷达成像

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摘要

Techniques for high-resolution radar imaging through a pipe are explored. To improve the angular resolution imposed by the pipe diameter, two high-resolution processing methods, MUSIC and compressed sensing (CS), are adapted for through-pipe radar imaging. First, the signal model, for propagation through the pipe, is formulated such that MUSIC and CS can be used. Then, methods for forming radar images from scattering collected through a pipe are derived. The methods are then demonstrated through electromagnetic simulation and verified with measurement data. It is shown that both methods provide high angular resolution in comparison with matched filter processing. The primary difference between the methods is that MUSIC requires multistatic data collection, while monostatic data collection is sufficient for CS. The performance of the two methods in terms of the number of targets and the signal-to-noise ratio is also evaluated. It is found that both methods can be used to image a complex scene composed of multiple point scatterers. CS, however, requires fewer number of data points than MUSIC. On the other hand, MUSIC is found to be less susceptible to noise than CS.
机译:探索了通过管道进行高分辨率雷达成像的技术。为了提高管道直径所施加的角分辨率,两种高分辨率处理方法(MUSIC和压缩传感(CS))适用于管道雷达成像。首先,制定用于通过管道传播的信号模型,以便可以使用MUSIC和CS。然后,推导了根据通过管道收集的散射形成雷达图像的方法。然后通过电磁仿真演示这些方法,并用测量数据进行验证。结果表明,与匹配滤波器处理相比,这两种方法均提供了高角度分辨率。两种方法之间的主要区别在于,MUSIC需要多静态数据收集,而单静态数据收集对于CS而言已足够。还评估了两种方法在目标数量和信噪比方面的性能。发现这两种方法都可以用于对由多个点散射体组成的复杂场景进行成像。但是,与MUSIC相比,CS所需的数据点数量更少。另一方面,发现MUSIC比CS更不易受到噪声的影响。

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