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Highly Flexible Mud-Pulse Telemetry: A New System

机译:高度灵活的泥浆脉冲遥测:新系统

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Mud Pulse Telemetry (MPT) systems enable the MWD/LWD companies to transmit to surface valuable directional and formation data during the drilling process. This data is used to optimize the drilling process, making drilling operations more cost efficient and allowing the drilling of more complex wells. The major factors limiting MPT data rates include maximum downhole signal strength, signal attenuation, surface induced noise and surface piping induced signal reflections. Most of these are not predictable, not arbitrarily adjustable and potentially change their properties during the course of data transmission. To achieve maximum possible data rates under those challenges, telemetry systems must be highly flexible, both downhole and at the surface receiver. Downhole, the transmission tool should be able to support different signal types and different signal frequencies to optimally use the transmission channel (the mud filled pipe bore).These signaling parameters should be changeable during operation. On surface, sophisticated noise processing should be employed to increase the overall system Signal-to-Noise Ratio (SNR). This paper describes a new system for mud pulse telemetry that supports two signaling types, different signal modulations and various signal frequencies. The new system comprises a novel mud pulser and a digitally controlled, automatically adjusted surface system. With the downhole mud pulser in the borehole, the new system allows the optimization of the mud pulse telemetry process for maximum MWD/LWD information at surface while drilling the well. This paper introduces the system and gives details on how the achieved high speed data rates of the new telemetry system have helped to deliver real time answers while drilling.
机译:MUD脉冲遥测(MPT)系统使MWD / LWD公司能够在钻井过程中传输到表面有价值的方向和地层数据。该数据用于优化钻井过程,使钻井操作更具成本效益,并且允许钻孔更复杂的井。限制MPT数据速率的主要因素包括最大井下信号强度,信号衰减,表面诱导噪声和表面管道诱导的信号反射。大多数这些都不是可预测的,而不是任意调节,并且在数据传输过程中可能改变它们的性质。为了在这些挑战下实现最大可能的数据速率,遥测系统必须高度灵活,井下和表面接收器。井下,传输工具应该能够支持不同的信号类型和不同的信号频率,以最佳地使用传输通道(泥浆填充管道孔)。这些信号参数在操作期间应该是可变的。表面上,应采用复杂的噪声处理来增加整体系统信噪比(SNR)。本文介绍了一种用于泥浆脉冲遥测的新系统,其支持两个信令类型,不同的信号调制和各种信号频率。新系统包括新颖的泥浆脉冲脉冲和自动调整的表面系统。随着井下泥浆的钻孔,新系统允许在钻井钻井时进行最大MWD / LWD信息的泥浆脉冲遥测过程。本文介绍了该系统,提供了关于新遥测系统的高速数据速率如何在钻井时帮助提供实时答案的详细信息。

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