首页> 外文会议>2018 Moscow Workshop on Electronic and Networking Technologies >Signal processing in the microwave front-end radiolink for logging-while-drilling through the borehole pipes
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Signal processing in the microwave front-end radiolink for logging-while-drilling through the borehole pipes

机译:微波前端无线电链路中的信号处理,用于随钻测井

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Logging-while-drilling (LWD) telemetry systems have been designed relying on cable-based equipment or advanced signal processing techniques applied to the electromagnetic channel through ground. The main disadvantage of such systems consist in the fact that measurements can be actually carried out only when the drilling operation is stopped. In this paper, a dedicated X-band equipment for LWD telemetry along pipes regarded as dielectric waveguides is proposed. A hybrid-integrated power amplifier-transmitter for this purpose is described. This system represents a modern solution to geophysical applications where transitions from vertical to horizontal drilling are required. Drilling pipes provide a new communication channel for telemetry although the potential issues related to large attenuation in the soil and external disturbances are to be carefully assessed beforehand. In particular, great attention has to be put in such a way as to achieve an efficient excitation and reduced distortion of the radio signal propagating along the pipe. In the paper we put in details the simulated performances, transmitter design, and current-efficiently issues. The output power is up to 10-25 Wt in short-pulse mode, at central lobe of 9-10 GHz. This level of power is sufficient for the short boreholes. The proposed amplifier-transmitter is used to establish a new communication channel. It is link between surface and the drilling point. Some review explaining the great degree of interest in this topic is presented. Experimental measurement results are provided as well.
机译:随钻测井(LWD)遥测系统的设计依赖于基于电缆的设备或应用于通过地面的电磁通道的先进信号处理技术。这种系统的主要缺点在于,只有在停止钻井操作后才能进行测量。本文提出了一种专用的X波段设备,用于沿管道的LWD遥测,该设备被视为介质波导。描述了为此目的的混合集成功率放大器-发射器。该系统代表了需要从垂直钻孔到水平钻孔过渡的地球物理应用的现代解决方案。钻杆为遥测提供了新的通讯渠道,尽管与土壤大量衰减和外部干扰有关的潜在问题需要事先进行仔细评估。特别地,必须以引起有效激励和减小沿管道传播的无线电信号的失真的方式来引起高度关注。在本文中,我们详细介绍了仿真性能,变送器设计和电流有效问题。在中心脉冲为9-10 GHz时,短脉冲模式下的输出功率高达10-25 Wt。该功率水平足以满足短钻孔的需要。提出的放大器-发射器用于建立新的通信信道。它是表面和钻孔点之间的链接。一些评论解释了对该主题的高度兴趣。还提供了实验测量结果。

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