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Synthesis of the Optimal Piecewise Linear Sweep Signal for Vibrational Seismic Sounding

机译:振动地震探测的最佳分段线性扫描信号的合成

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摘要

A method for calculating the frequency sweep law of a vibration source is proposed and substantiated, which yields a flat spectrum of the correlogram of the target wave, regardless of natural amplitude-frequency distortions introduced by the medium and source. Such a spectrum serves as the main prerequisite for achieving maximum resolution of closely spaced wave pulses in the resulting seismogram. The methodology includes test sounding of a typical seismic geological object with any linear sweep signal in the desired frequency range, separation and spectral analysis of the vibrogram of the target wave, splitting of the resulting spectrum into many narrow frequency intervals, and calculating for each of the intervals its own partial linear sweep. Construction of a continuous sequence of these partial sweeps is the final operation in synthesizing an adaptive nonlinear (piecewise linear) sweep signal. In this study, the necessary conditions are found and formulated that ensure correctness of the coupling procedure for partial sweeps.
机译:提出并证实了用于计算振动源的频率扫描规律的方法,其产生了目标波的相关性的平面,而不管介质和源引入的自然幅度频率畸变。这种光谱用作在所得地震图中实现最大间隔波脉冲的最大分辨率的主要先决条件。该方法包括测试典型地震性地质对象的探测,其在所需的频率范围内的任何线性扫描信号,目标波的vibrogram的分离和光谱分析,将所得频谱分成许多窄频率间隔,并计算每个间隔自身部分线性扫描。这些部分扫描的连续序列的构造是合成自适应非线性(分段线性)扫描信号的最终操作。在本研究中,发现并配制了必要的条件,并确保了部分扫描的偶联程序的正确性。

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