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Application of Spread-Spectrum and Frequency Hopping Techniques to Geophysical Inversion Problems

机译:扩频和跳频技术在地球物理反演问题中的应用

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In this paper we present a theoretical framework for the application of Direct Sequence Spread-Spectrum techniques in conjunction with slow Frequency Hopping to the estimation of acoustic wave propagation times in a geophysical medium. Instead of measuring travel-time via manual (visual) estimation of the direct-path arrival time of a one-shot disturbance sent from the source to the receiver, we opt to measure travel-time by establishing a Direct Sequence Spread-Spectrum Minimum Shift Keying link between the source and the receiver. By sending timestamp data between the source and the receiver over this spread-spectrum link, travel-times can be calculated In order to combat the problem of false locking of the Spread-Spectrum system on strong indirect-path waves, we frequency-hop the center frequency of the spread-spectrum signal and calculate the travel-time via the decision algorithm of "plurality rules" applied to the travel-times computed at each center frequency.
机译:在本文中,我们向地球物理介质中的声波传播时间的慢速跳频应用了直接序列扩频技术的理论框架。通过从源到接收器发送的单次干扰的直接路径到达时间的直接路径到达时间的手动(Visual)估计来选择通过建立直接序列扩频最小偏移来测量旅行时间来测量旅行时间源和接收器之间的键控链路。通过在该扩频链路上发送源和接收器之间的时间戳数据,可以计算行程倍,以便打击在强大的间接路径波上的扩频系统的错误锁定问题,我们跳起扩频信号的中心频率,并通过应用于在每个中心频率计算的行进时间的“多个规则”的决策算法来计算行进时间。

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