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Simulation and Analysis of Realistic Human Motion Micro-Doppler Signatures in Through-Wall Radar

机译:通过壁雷达现实人体运动微多销签证的仿真与分析

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Obtaining the large statistically independent training datasets for effective classification in through-wall radar studies is always remaining as a challenging task due to the practical and monetary difficulties in the collection of real -time experimental data. Therefore, the development of accurate but computationally less complex simulation models that combine human micro-Doppler data with through-wall propagation effects is instrumental in generating such large training datasets, which can improve the classification accuracy. The proposed research work has presented a simple and accurate simulation methodology which combines human Radar Cross Section (RCS) modeling using primitive based techniques and Finite Difference Time Domain (FDTD) simulation of walls. The human radar scatterings are analyzed in the Line of Sight (LOS) conditions and through-wall scenarios. The simulated spectrograms in the LOS conditions are corroborated by measurement data collected using a monostatic continuous wave Radar. The simulated spectrograms in through-wall conditions shows that the distortions in the Doppler frequencies from different body segments are minimal but the magnitude response of the doppler spectrogram is affected due to attenuation and fading
机译:获得大型统计上独立的训练数据集,用于通过墙壁雷达研究的有效分类,由于采集实时实验数据集合的实际和货币困难,始终仍然是一个具有挑战性的任务。因此,在进行中,将人类微多普勒数据与通壁传播效果组合的准确但计算不太复杂的模拟模型的开发在产生这种大型训练数据集时可以提高分类准确性。该拟议的研究工作提出了一种简单准确的仿真方法,它使用基于原始的技术和墙壁的有限差分时域(FDTD)模拟来结合人雷达横截面(RCS)建模。在视线(LOS)条件和通墙场景中分析人雷达散射。通过使用单体连续波雷达收集的测量数据来证实LOS条件中的模拟谱图。通过墙壁条件的模拟谱图表明,来自不同体段的多普勒频率中的失真是最小的,但由于衰减和衰减,多普勒谱图的幅度响应受到影响

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