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METHOD FOR MEASURING REFLECTION COEFFICIENT OF RADIO ABSORBING MATERIALS

机译:吸波材料反射系数的测量方法

摘要

FIELD: measuring equipment.;SUBSTANCE: method is proposed for measuring the reflection coefficient of the radio absorbing materials (RAM), including radiation of the radio absorbing material sample and the metal plate of the same size by the pulsed ultra-wideband signals, registration of the discrete signals corresponding to the signals from the radio absorbing material sample Vc and from the metal plate Vm, calculation of the amplitude signal spectra using the Fourier transformation and receiving the frequency characteristic of the reflection coefficient as a ratio of the amplitude spectra, and characterized in that the UWB signal is in the picosecond range, and the samples Vc and Vm are added with the zero counts to the length N before performing the Fourier transformation. Herewith N=2n≥100N0, where N0 is the original length of the samples, and then nuclear-aliasing of the samples Vc and Vm is performed in the Gaussian window with the width h. Herewith h is according to the maximum likelihood principle excluding the items one by one according to the formula , where V is the original sample, Vs - is the aliasing function, V/{i} - a sample with the excluded i-th count.;EFFECT: improving the measurement accuracy by decreasing the frequency step in the frequency coefficient characteristic of the RAM reflection and reducing the noise component of the measured pulse signals by the nuclear aliasing method, the relative error of determining the frequency characteristic of the reflection coefficient is reduced by 10-15 percent as compared to the prototype.;3 dwg
机译:领域:测量设备;研究对象:提出了一种测量无线电吸收材料(RAM)反射系数的方法,包括通过脉冲超宽带信号对相同尺寸的无线电吸收材料样品和金属板进行辐射,配准对应于来自无线电吸收材料样本V c 和金属板V m 的信号的离散信号,使用傅立叶变换计算幅度信号频谱并接收反射系数的频率特性与振幅谱之比,其特征在于UWB信号在皮秒范围内,样本V c 和V m 在执行傅立叶变换之前,将零计数加到长度N. N = 2 n ≥100N 0 ,其中N 0 是样本的原始长度,然后是样本的核混叠V c 和V m 在宽度为h的高斯窗口中执行。因此,h根据最大似然原理,根据公式一一排除,其中V是原始样本,V s -是别名函数,V / {i}-排除第i个计数的样本;效果:通过降低频率来提高测量精度通过核混叠法提高RAM反射的频率系数特性并减少测量脉冲信号的噪声分量,与原型相比,确定反射系数的频率特性的相对误差降低了10%到15% 。; 3 dwg

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