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                 Li Cheng, Ding Tianhuai.  Effect of damping bound-  string waveguide[J]. Shock and Vibration, 2014, 2014(1):
                 ary conditions on acoustic transmission of drill strings[J].  1–10.
                 Journal of Vibration and Shock, 2006, 25(6): 17–20, 175.  [31] Tochikawa T, Sakai T, Taniguchi R, et al.  Acoustic
             [23] 李成, 丁天怀. 不连续边界因素对周期管结构声传输特性的影                    telemetry: the new MWD system[C]. 1996 SPE Annual
                 响 [J]. 振动与冲击, 2006, 25(3): 172–175, 216.          Technical Conference and Exhibition, Denver, 1996.
                 Li Cheng, Ding Tianhuai.  Influence of discontinuous  [32] Harper G, Almanza E, Foss A, et al. Implementation of
                 boundaries on acoustic transmission in periodic cascade  advanced acoustic telemetry system adds value and effi-
                 with application to drill pipes[J]. Journal of Vibration and  ciency to well testing operations[C]. SPE Asia Pacific Oil
                 Shock, 2006, 25(3): 172–175, 216.                 and Gas Conference and Exhibition, Jakarta, 2003.
             [24] Gao L, Gardner W R, Robbins C, et al.  Limits on  [33] Azari M, Salguero A, Almanza E, et al. Data acquisi-
                 data communication along the drillstring using acous-  tion with advanced acoustic telemetry improves opera-
                 tic waves[J]. SPE Reservoir Evaluation and Engineering,  tional efficiency in deep-water and land-well testing case
                 2008, 11(1): 141–146.                             histories[C]. SPE Asia Pacific Oil and Gas Conference and
             [25] Gutierrez-Estevez M A, Krueger U, Krueger K A, et  Exhibition, Adelaide, 2006.
                 al. Acoustic broadband communications over deep drill  [34] Gao L, Finley D, Gardner W, et al. Acoustic teleme-
                 strings using adaptive OFDM[C]. 2013 IEEE Wireless  try can deliver more real-time downhole data in under-
                 Communication and Networking Conference, 2013.    balanced drilling operations[C]. IADC/SPE Drilling Con-
             [26] Li C, Chang J F, Fan S C, et al. Analyzing the validity of a  ference, Miami, 2006.
                 DFT-based improved acoustic OFDM transmission along  [35] Reeves M E, Camwell P L, Mcrory J. High speed acoustic
                 rotating simulated drillstring[J]. Mechanical Systems and  telemetry network enables real-time along string measure-
                 Signal Processing, 2016, 81: 447–460.             ments, greatly reducing drilling risk[C]. SPE Offshore Eu-
             [27] Ma D, Shi Y B, Zhang W, et al. Design of acoustic trans-  rope Oil and Gas Conference and Exhibition, Aberdeen,
                 mission along drill strings for logging while drilling data  2011.
                 based on adaptive NC-OFDM[J]. International Journal of  [36] Reeves M, Smith D, Groves D, et al. Unique acoustic
                 Electronics and Communications, 2018, 83: 329–338.  telemetry network with distributed pressure measurement
             [28] Sinanovic S. Limits of acoustic waveguide communica-  nodes enables accurate real-time analysis of sweep effec-
                 tion[D]. Houston: Rice University, 2006.          tiveness[C]. SPE Annual Technical Conference and Exhi-
             [29] Liu X C, Feng X L. Research on weak signal detection for  bition, New Orleans, 2013.
                 downhole acoustic telemetry system[C]. IEEE 2010 3rd  [37] 李志刚, 管志川, 王以法. 随钻声波遥测及其关键问题分析 [J].
                 International Congress on Image and Signal Processing,  石油矿场机械, 2008, 37(9): 6–9.
                 Yantai, 2010: 4432–4435.                          Li Zhigang, Guan Zhichuan, Wang Yifa. Acoustic teleme-
             [30] Li C, Chang J F, Liu Z, et al. Characteristics analysis of  try while drilling and analysis in its key problems[J]. Oil
                 joint acoustic echo and noise suppression in periodic drill-  Field Equipment, 2008, 37(9): 6–9.
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