测量多分量非平稳信号中各分量的瞬时频率和相位的精度估计

H. Bratchenko, М. O. Koptielov, H. H. Smahliuk, M. Martynov
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引用次数: 0

摘要

测量多分量信号的非平稳分量的瞬时频率和相位在处理医疗、雷达、声纳、地震、振动和语音信号中是实际的。在测量多分量非平稳信号的参数时,需要测量多个非平稳调频信号分量的瞬时频率和电流相位。本文采用仿真建模的方法对非平稳信号分量的指定参数的测量精度进行了估计。研究了基于短时傅里叶变换的测量方法和在时间滑动观测窗口对信号分量进行频域局部自适应匹配滤波的方法。对信号的每个分量分别进行匹配滤波器的调整,返回到时域并考虑到前一个时间窗口中的滤波器设置。对由三分量组成的信号模型采用了仿真方法。前两个分量为调频谐波,后一个分量为恒频谐波。通过对各分量的幅值和加性高斯噪声方差的变化,研究了信噪比对测量精度的影响。通过将瞬时频率和电流相位测量值与已知依赖项进行比较,获得了实验标准差的估计。选择非平稳信号分量的频率规律为谐波,这也使我们能够评估瞬时频率变化的非线性对测量精度的影响。给出了两个测量通道之间的相位差测量结果,以说明在多分量非平稳信号情况下这种测量通道的质量。研究结果对逆合成孔径雷达(ISAR)和干涉式ISAR成像方法的发展具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ACCURACY ESTIMATION OF MEASURING THE INSTANTANEOUS FREQUENCIES AND PHASES OF COMPONENTS OF THE MULTICOMPONENT NON-STATIONARY SIGNAL
Measurements of instantaneous frequencies and phases of non-stationary components of the multicomponent signals are actual in processing medical, radar, sonar, seismic, vibration, and speech signals. When we measure the parameters of multi-component non-stationary signals, it is a need to measure the instantaneous frequency and current phase of several non-stationary frequency-modulated signal components. In this article, estimates of the measurement accuracy of the specified parameters of the non-stationary signal components were obtained using the method of simulation modeling. Measurement methods based on the short-time Fourier transform and the proposed method with local adaptive matching filtering of signal components in the frequency domain in the time-sliding observation window were studied. Adjustment of matched filters is performed separately for each component of the signal, returning to the time domain and taking into account the filter settings in the previous time window. The simulation method is used for the signal model consisting of three components. The first two components are the frequency modulated harmonic ones and the last is harmonic with constant frequency. The amplitudes of components and additive Gaussian noise variance were variated to study the influence of signal-to-noise ratio on the accuracy of measurements. Estimates of the experimental standard deviation of instantaneous frequencies and current phase measurements were obtained by comparing them with their known dependencies. The frequency laws of non-stationary signal components were chosen to be harmonic, which also allowed us to evaluate the influence of the nonlinearity of the instantaneous frequency change on the measurement accuracy. The results of differential phase measurements between two measurement channels are obtained to illustrate the quality of such ones for multi-component non-stationary signals situations. The results of this study may be useful for the development of imaging methods in inverse synthetic aperture radars (ISAR) and interferometric ISAR.
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