具有钻井噪声的井下声道编码数字遥测系统设计

W. K. Han, L. Kumar, Y. Guan, Sumei Sun
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引用次数: 2

摘要

随钻测井(LWD)和随钻测量(MWD)的应用促进了声波遥测技术的发展,以获取井下数据。本文提出了一种具有伪相干差分能量检测的多电平频移键控(ML-FSK)调制收发器,并对其进行了优化。采用所提出的多电平FSK收发器的动机是它能够以低复杂度的收发器架构消除大的钻井噪声(钻头噪声和地面噪声)的影响,并且相对容易处理由恶劣的操作环境引起的振荡器或时钟漂移。为了获得比非相干解调更好的误码率(BER),同时保持钻井降噪能力,接收器被修改为伪相干解调器。为了进一步提高鲁棒性,采用前向纠错(FEC)编码,并在存在钻井噪声的真实声学钻柱通道上评估了几种编码选项。所研究的钻柱通道由110段组成,长度为1.011 km,具有典型的梳状滤波器通道结构,具有4个通带(2、3、4和5)用于遥测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of coded digital telemetry system for acoustic downhole channel with drilling noise
Logging-while-drilling (LWD) and measurement-while-drilling (MWD) applications have prompted the development of acoustic telemetry for retrieving downhole data. In this paper, a multilevel frequency shift keying (ML-FSK) modulation transceiver with pseudo-coherent differential energy detection is proposed and optimized for such acoustic telemetry applications. The motivation of employing the proposed multilevel FSK transceiver is its ability to cancel the effect of large drilling noise (drill bit noise and surface noise) with a low-complexity transceiver architecture, and its relative ease of dealing with oscillator or clock drifts caused by the harsh operating environment. To achieve better bit error rate (BER) over non-coherent demodulation while retaining the drilling noise cancellation capability, the receiver is modified to a pseudo-coherent demodulator. To further improve robustness, forward error correction (FEC) coding is applied and several coding options are evaluated over realistic acoustic drill string channel in the presence of drilling noise. The drill string channel investigated is made up of 110 segments, spans 1.011 km in length, has a characteristic comb-filter channel structure, with four pass bands (2nd, 3rd, 4th and 5th) used for telemetry.
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