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Communication Rate Increase in Drill Strings of Oil and Gas Wells Using Multiple Actuators

机译:使用多个执行器提高油气井钻柱的通讯速率

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摘要

Wireless data communication and telemetry during drilling deep oil and gas wells are important enablers for safe and timely drilling operations. The transmission of information through drill strings and pipes using sound waves is a useful and practical approach. However, given the limited available bandwidth, transmission rates are typically smaller than what is needed. In this paper, a new method and system are proposed to increase the transmission rate over the same bandwidth, by deploying more than one actuator. Upon using multiple actuators, several data streams can be transmitted simultaneously. This increases the data rate without the need for additional bandwidth. The experimental results of a testbed with two actuators are presented, where the transmission rate is doubled with no bandwidth increase. A strain sensor receiver and accelerometer receivers are used to separate and demodulate the two data streams. It is demonstrated that it is possible to recover the data in the new faster system benefiting from two actuators, while having about the same bit error probability performance as a one-actuator system. Various combinations of strain and acceleration sensors are considered at the receive side. Due to some properties of strain channels (e.g., smaller delay spreads and their less-frequency-selective behavior) presented in this paper, it appears that a strain sensor receiver and an accelerometer receiver together can offer a good performance when separating and demodulating the two actuators’ data in the testbed. Overall, the experimental results from the proposed system suggest that upon using more than one actuator, it is feasible to increase the data rate over the limited bandwidth of pipes and drill strings.
机译:钻深油和气井期间的无线数据通信和遥测是安全及时地进行钻井作业的重要推动力。使用声波通过钻柱和管道传输信息是一种有用且实用的方法。但是,鉴于可用带宽有限,传输速率通常小于所需的速率。本文提出了一种通过部署多个执行器来提高相同带宽上的传输速率的新方法和系统。使用多个执行器时,可以同时传输多个数据流。这可以提高数据速率,而无需额外的带宽。给出了带有两个执行器的测试平台的实验结果,其中传输速率增加了一倍,而带宽没有增加。应变传感器接收器和加速度计接收器用于分离和解调两个数据流。事实证明,有可能受益于两个执行器,在新的更快的系统中恢复数据,同时具有与单执行器系统相同的误码率性能。在接收侧考虑应变和加速度传感器的各种组合。由于本文介绍的应变通道的某些特性(例如,较小的延迟扩展和较低的频率选择性行为),看来当分离和解调二者时,应变传感器接收器和加速度计接收器一起可以提供良好的性能。执行器中的执行器数据。总体而言,所提出系统的实验结果表明,使用多个执行器后,在有限的管道和钻柱带宽上提高数据速率是可行的。

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