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首页> 外文期刊>International journal of antennas and propagation >Extraction of Weak Scatterer Features Based on Multipath Exploitation in Radar Imagery
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Extraction of Weak Scatterer Features Based on Multipath Exploitation in Radar Imagery

机译:基于多径开发的雷达图像弱散射特征提取

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摘要

We proposed an improved solution to two problems. The first problem is caused by the sidelobe of the dominant scatterer masking a weak scatterer. The proposed solution is to suppress the dominant scatterer by modeling its electromagnetic effects as a secondary source or "extra dependent transmitter" in the measurement domain. The suppression of the domain scatterer reveals the presence of the weak scatterer based on exploitation ofmultipath effects. The second problem is linearizing the mathematical forward model in the measurement domain. Improving the quantity of the prediction, including multipath scattering effects (neglected under the Born approximation), allows us to solve the inverse problem. The multiple bounce (multipath) scattering effect is the interaction of more than one target in the scene. Modeling reflections from one target towards another as a transmitting dipole will add the multiple scattering effects to the scattering field and permit us to solve a linear inverse problem without sophisticated solutions of a nonlinear matrix in the forward model. Simulation results are presented to validate the concept.
机译:我们针对两个问题提出了一种改进的解决方案。第一个问题是由主要散射体的旁瓣掩盖了弱散射体引起的。提出的解决方案是通过将其电磁效应建模为测量域中的辅助源或“额外依赖的发射器”来抑制主要散射体。基于多径效应的利用,对域散射体的抑制揭示了弱散射体的存在。第二个问题是在测量域中线性化数学正向模型。改善预测量,包括多径散射效应(在Born近似中被忽略),使我们能够解决反问题。多反射(多路径)散射效果是场景中多个目标的相互作用。从一个目标到另一个目标的反射建模为传输偶极子,将在散射场中增加多重散射效果,并允许我们解决线性逆问题,而无需在正向模型中使用复杂的非线性矩阵解决方案。仿真结果表明了这一概念。

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