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Acoustic broadband communications over deep drill strings using adaptive OFDM

机译:使用自适应OFDM的深钻柱声宽带通信

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In this paper, we report first acoustic communications experiments along deep drill strings enabling data rates up to 20 kbit/s. To reduce costs for geothermal energy, search for water-bearing fault zones in the rocks hundreds of meters below the ground will be assisted by seismic prediction while drilling (SPWD) enabling control of the drilling direction. The SPWD tool needs higher data rates to the ground. In contrast to common mud-pulse telemetry offering few bit/s, our approach is based on acoustic wave propagation along the steel wall of the drill string. Based on waveguide theory, we develop a tractable channel model for drill-string communication predicting the pass and stopbands created by regular screw joints between the pipes. For data transmission, we use closed-loop adaptive orthogonal frequency division multiplexing (OFDM) following the 3rd Generation Partnership Project (3GPP) Long Term Evolution (LTE). First results indicate that, in this way, much higher data rates can be realized in future deep drilling applications.
机译:在本文中,我们报告了沿深钻柱进行的首次声通信实验,使数据速率高达20 kbit / s。为了降低地热能的成本,在钻探地震预测(SPWD)的帮助下,可在地下数百米的岩石中寻找含水断层带,从而控制钻探方向。 SPWD工具需要更高的地面数据速率。与仅提供几位/秒的普通泥浆脉冲遥测技术相比,我们的方法是基于声波沿钻柱钢壁的传播。基于波导理论,我们开发了用于钻柱通信的可处理通道模型,预测了管道之间的常规螺纹接头所产生的通带和阻带。对于数据传输,我们在第三代合作伙伴计划(3GPP)长期演进(LTE)之后使用闭环自适应正交频分复用(OFDM)。最初的结果表明,以这种方式,在未来的深钻应用中可以实现更高的数据速率。

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