<?xml version="1.0" encoding="UTF-8"?>
<doi_batch version="5.4.0" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.crossref.org/schema/5.4.0" xsi:schemaLocation="http://www.crossref.org/schema/5.4.0 https://www.crossref.org/schemas/crossref5.4.0.xsd" xmlns:jats="http://www.ncbi.nlm.nih.gov/JATS1" xmlns:fr="http://www.crossref.org/fundref.xsd" xmlns:ai="http://www.crossref.org/AccessIndicators.xsd" xmlns:rel="http://www.crossref.org/relations.xsd" xmlns:mml="http://www.w3.org/1998/Math/MathML">
  <head>
    <doi_batch_id>NONE</doi_batch_id>
    <timestamp>20260316095558984</timestamp>
    <depositor>
      <depositor_name>wseas/wseas</depositor_name>
      <email_address>content-registration-form+ja@crossref.org</email_address>
    </depositor>
    <registrant>content-registration-form</registrant>
  </head>
  <body>
    <journal>
      <journal_metadata>
        <full_title>WSEAS TRANSACTIONS ON ELECTRONICS</full_title>
        <issn media_type="print">1109-9445</issn>
        <issn media_type="electronic">2415-1513</issn>
      </journal_metadata>
      <journal_article>
        <titles>
          <title>Research on Electronic Monitoring SystemsForThe Drilling ProcessIn Antarctic Conditions</title>
        </titles>
        <contributors>
          <person_name sequence="first" contributor_role="author">
            <given_name>Irina</given_name>
            <surname>Rastvorova</surname>
          </person_name>
          <person_name sequence="additional" contributor_role="author">
            <given_name>Vladimir</given_name>
            <surname>Smirnov</surname>
          </person_name>
        </contributors>
        <jats:abstract xml:lang="en">
          <jats:p>The article discusses the important topic of using electronic measuring instruments in the drilling process in the difficult conditions of Antarctica. It describes in detail modern methods and innovative technologies for protecting electronic equipment from aggressive environmental influences. The article also discusses the most effective protective measures designed specifically for drilling in the harsh Antarctic climate, ensuring reliable and accurate operation of instruments. In addition, an overview of various electronic systems, sensors, data acquisition devices, and control systems used in the drilling process is provided. To further develop this field, a detailed research plan has been developed to study and evaluate modern approaches aimed at improving the durability and efficiency of electronic devices in extreme conditions.</jats:p>
        </jats:abstract>
        <publication_date media_type="print">
          <month>12</month>
          <day>31</day>
          <year>2025</year>
        </publication_date>
        <publication_date media_type="online">
          <month>12</month>
          <day>31</day>
          <year>2025</year>
        </publication_date>
        <pages>
          <first_page>189</first_page>
        </pages>
        <publisher_item>
          <item_number item_number_type="article_number">19</item_number>
        </publisher_item>
        <ai:program name="AccessIndicators">
          <ai:license_ref>https://creativecommons.org/licenses/by/4.0/deed.en_US</ai:license_ref>
        </ai:program>
        <doi_data>
          <doi>10.37394/232017.2025.16.19</doi>
          <resource>https://wseas.com/journals/electronics/2025/a385117-204.pdf</resource>
        </doi_data>
        <citation_list>
          <citation key="ref0">
            <unstructured_citation>Salamatin, A. N.; Lipenkov, V. Y.; Barkov, N. I.; Jouzel, J.; Petit, J. R. and Raynaud, D. (1998). Ice core age dating and paleothermometer calibration based on isotope and temperature profiles from deep boreholes at Vostok Station (East Antarctica), J. Geophys. Res., 103( D8), 8963– 8977. doi.org/10.1029/97JD02253</unstructured_citation>
          </citation>
          <citation key="ref1">
            <unstructured_citation>Bol'shunov, A.V.; Vasilyev, N.I., and Timofeyev, I.P. (2021). Perspek-tivnoye tekhnologicheskoye resheniye po otboru prob donnikh otlozheniy podlednikovogo ozera Vostok: aktual'nost' I postanovka zadach issledovaniy // Zapiski Gornogo instituta.. T. 252. S. 779-787. doi: 10.31897/PMI.2021.6.1.</unstructured_citation>
          </citation>
          <citation key="ref2">
            <unstructured_citation>Gilichinsky, D.A.; Wilson, G.S.; Friedmann, E.I.; Mckay, C.P.; Sletten, R.S.; Rivkina, E.M.; Vishnivetskaya, T.A.; Erokhina, L.G.; Ivanushkina, N.E.; Kochkina, G.A.; Shcherbakova, V.A.; Soina, V.S.; Spirina, E.V.; Vorobyova, E.A.; Fyodorov-Davydov, D.G.; Hallet, B.; Ozerskaya, S.M.; Sorokovikov, V.A.; Laurinavichyus, K.S. and Tiedje, J. (2007). Microbial Populations in Antarctic Permafrost: Biodiversity, State, Age, and Implications for Astrobiology. Astrobiology. 7. 275-311. Doi:10.1089/ast2006.0012.</unstructured_citation>
          </citation>
          <citation key="ref3">
            <unstructured_citation>Davydkina, T.V.; Yankilevich, A.A. and Naumova, A.N. (2025). Specifics of magnetotelluric studies in Antarctica.Journal of Mining Institute, Vol. 273. p. 80-93.. EDN XCUAZK.</unstructured_citation>
          </citation>
          <citation key="ref4">
            <unstructured_citation>Serbin, D.V. and Dmitriev, A.N. (2022). Experimental research on the thermal method of drilling by melting the well in ice mass with simultaneous controlled expansion of its diameter // Journal Of Mining Institute. T. 257. S. 833-842. DOI: 10.31897/PMI.2022.82.</unstructured_citation>
          </citation>
          <citation key="ref5">
            <unstructured_citation>İ. Baylakoğlu. A. Fortier; S. Kyeong; R. Ambat; H. Conseil-Gudla; M.H. Azarian and Michael G. Pecht, (2021). The detrimental effects of water on electronic devices. Advances in Electrical Engineering, Electronics and Energy 2021. Doi.org/10.1016/j.prime.2021.100016.</unstructured_citation>
          </citation>
          <citation key="ref6">
            <unstructured_citation>Bolshunov, A. V.; Vasilev, D. A.; Ignatiev, S. A.; Dmitriev, A. N. and Vasilev, N. I. (2022). Mechanical drilling of glaciers with bottomhole scavenging with compressed air. Led iSneg, 62(1), 35-46. doi:10.31857/S2076673422010114.</unstructured_citation>
          </citation>
          <citation key="ref7">
            <unstructured_citation>Dvoynikov, M.; Kunshin, A.; Blinov, P. and Morozov, V. (2020). Development of a Mathematical Model for Controlling Drilling Parameters with Screw Downhole Motor. International Journal of Engineering. 33. 1423- 1430. DOI:10.5829/ije.2020.33.07a.30.</unstructured_citation>
          </citation>
          <citation key="ref8">
            <unstructured_citation>A.DiepgenV.; Zimmermann, C. F.; Bayer, Y.; Zhou, C.; Forster,; P. Wilbers, J. Leib, A.; Schletz, S. and Virtanen, M. März (2019). Parylene Coatings in Power Electronic Modules, International Symposium on Advanced Power Packaging (ISAPP2019),</unstructured_citation>
          </citation>
          <citation key="ref9">
            <unstructured_citation>Baldissera, A. and Ferreira, C. A. (2012). Coatings based on electronic conducting polymers for corrosion protection of metals. Progress in Organic Coatings. Vol. 75., p. 241–247. DOI: 10.1016/j.porgcoat.2012.05.004.</unstructured_citation>
          </citation>
          <citation key="ref10">
            <unstructured_citation>Watson, J. and Castro, G. (2015). A review of high-temperature electronics technology and applications. Journal of Materials Science: Materials in Electronics. Vol. 26. P. 9226- 9235, doi.10.1007/s10854-015-3459-4.</unstructured_citation>
          </citation>
          <citation key="ref11">
            <unstructured_citation>V. Lakshminarayanan and N. Sriraam (2014). "The effect of temperature on the reliability of electronic components," 2014 IEEE International Conference on Electronics, Computing and Communication Technologies (CONECCT), pp. 1-6, doi: 10.1109/CONECCT.2014.6740182.</unstructured_citation>
          </citation>
          <citation key="ref12">
            <unstructured_citation>Tan, F.L. and Tso, C. P. (2004). Cooling of mobile electronic devices using phase change materials. Applied Thermal Engineering - APPL THERM ENG. 24. 159-169. Doi.10.1016/j.applthermaleng.2003.09.005.</unstructured_citation>
          </citation>
          <citation key="ref13">
            <unstructured_citation>X.K. Yu and Y.B. Tao (2022). Preparation and characterization of paraffin/expanded graphite composite phase change materials with high thermal conductivity, International Journal of Heat and Mass Transfer, p. 123433 doi:10.1016/j.ijheatmasstransfer.2022.123433 .</unstructured_citation>
          </citation>
          <citation key="ref14">
            <unstructured_citation>Mingyun, L.; Song, J.; Ling, Z.; Zhang, Z. and Fang, Xiaoming. (2021). Phase Change Material (PCM) coat for battery thermal management with integrated rapid heating and cooling functions from -40 °C to 50 °C. Materials Today Energy. 20. Doi.10.1016/j.mtener.2021.100652.</unstructured_citation>
          </citation>
          <citation key="ref15">
            <unstructured_citation>Yang, F.; Xie, Y.; Deng, Y. and Yuan, C. (2018). Predictive modeling of battery degradation and greenhouse gas emissions from U.S. state-level electric vehicle operation. Nature Communications. 9. Doi.10.1038/s41467-018-04826-0.</unstructured_citation>
          </citation>
          <citation key="ref16">
            <unstructured_citation>Sun, J.; Li, J.; Zhou, T.; Yang, K.; Wei, S.; Tang, N.; Dang, N.; Li, H.; Qiu, X. and Chen, L. (2016). Toxicity, a serious concern of thermal runaway from commercial Li-ion batteries. Nano Energy. Vol. 27, p. 313-319, doi.10.1016/j.nanoen.2016.06.031.</unstructured_citation>
          </citation>
          <citation key="ref17">
            <unstructured_citation>Chen, W.; Li, J.; Shu, C.M. and Wang, Y. (2015). Effects of thermal hazard on 18650 lithium-ion battery under different states of charge. Journal of Thermal Analysis and Calorimetry. 121. Doi.10.1007/s10973-015- 4672-3.</unstructured_citation>
          </citation>
          <citation key="ref18">
            <unstructured_citation>Rodrigues, M.; Babu, G.; Gullapalli, H.; KALAGA, K.; Sayed, F.; Kato, K.; Joyner, J. and Ajayan, P. (2017). A materials perspective on Li-ion batteries at extreme temperatures. Nature Energy. Vol. 2, p. 1-14, doi.10.1038/nenergy.2017.108.</unstructured_citation>
          </citation>
          <citation key="ref19">
            <unstructured_citation>Nobili, F.; Meschini, I.; Mancini, M.; Tossici, R.; Marassi, R.and Croce, F. (2013). High-performance Sn-carbon nanocomposite anode for lithium-ion batteries: Lithium storage processes characterization and lowtemperature behavior. Electrochimica Acta. 107. Doi.10.1016/j.electacta.2013.05.150.</unstructured_citation>
          </citation>
          <citation key="ref20">
            <unstructured_citation>Ouyang, D.; He, Y.; Weng, J.; Liu, J.; Chen, M. and Wang, J. (2019). Influence of low temperature conditions on lithium-ion batteries and the application of an insulation material. RSC Advances. 9. 9053-9066. Doi.10.1039/C9RA00490D.</unstructured_citation>
          </citation>
          <citation key="ref21">
            <unstructured_citation>Huang, C.K. ; Sakamoto, J.; Wolfenstine, J. and Surampudi, S. (2000). The Limits of LowTemperature Performance of Li-Ion Cells. Journal of The Electrochemical Society. 147. 2893-2896. Doi.10.1149/1.1393622.</unstructured_citation>
          </citation>
          <citation key="ref22">
            <unstructured_citation>Şahin, M.; Blaabjerg, F. and Sangwongwanich, A. (2022). A Comprehensive Review on Supercapacitor Applications and Developments. Energies. 15. 674. Doi.10.3390/en15030674.</unstructured_citation>
          </citation>
          <citation key="ref23">
            <unstructured_citation>Amna Riaz.; Sarker, M.; Md Saad, M. and Mohamed, R. (2021). Review on Comparison of Different Energy Storage Technologies Used in Micro-Energy Harvesting, WSNs, Low-Cost Microelectronic Devices: Challenges and Recommendations. Sensors. 21. Doi.10.3390/s21155041.</unstructured_citation>
          </citation>
          <citation key="ref24">
            <unstructured_citation>Miller, J. and Burke, A. (2008). Electrochemical Capacitors: Challenges and Opportunities for Real-World Applications. The Electrochemical Society Interface. 17. 53- 57. Doi.10.1149/2.F08081IF.</unstructured_citation>
          </citation>
          <citation key="ref25">
            <unstructured_citation>Li, Z.; Wang, X.; Zhao, L.; Fengyao, C.; Gao, C.; Wang, Y.; Yan, M.; Zhou, Q.; Zhao, M.; Wang, X.; Wang, J.; Yuan, M.; Wu, M.; Wang, L.; Zhao, Y. and Qu, L. (2022). Aqueous hybrid electrochemical capacitors with ultra-high energy density approaching for thousand-volts alternating current line filtering. Nature Communications. 13. Doi.10.1038/s41467-022-34082-2.</unstructured_citation>
          </citation>
          <citation key="ref26">
            <unstructured_citation>P.Talalay,N. Liu, Y. Yang , H. Xu, M. Sysoev, X. Fan (2019). Ice drills recovery using chemical deicers. Polar Scince. Vol. 19. P. 49-56, .doi.org/10.1016/j.polar.2018.08.005</unstructured_citation>
          </citation>
          <citation key="ref27">
            <unstructured_citation>Litvinenko V. S., Dvoynikov M. V. (2020). Methodology for determining the parameters of the drilling mode of obliquely directed rectilinear sections of wells by screw downhole engines. Zapiski Gornogoinstituta, vol. 241, pp. 105-112. DOI: 10.31897/PMI.2020.1.105.</unstructured_citation>
          </citation>
          <citation key="ref28">
            <unstructured_citation>Tsukanov, D. V.; Smirnova, D. L.; Petkova, A. P. and Shtertser, V. V. (2024). Modeling of cooling mode during hardening of a largesized rotor blank made of Cr – Ni – Mo – V steel. Ferrous Metals , 9, 29-36. DOI: 10.17580/chm.2024.09.05.</unstructured_citation>
          </citation>
          <citation key="ref29">
            <unstructured_citation>Witze, A. (2019). Chinese crew extract first rock from beneath East Antarctic ice in 60 years. Nature. 567. 13-14. Doi.10.1038/d41586-019-00659-z.</unstructured_citation>
          </citation>
          <citation key="ref30">
            <unstructured_citation>Nevskaya, M.A.; Belyaev, V.V.; Pasternak, S.N.; Vinogradova, V.V. and Shagidulina, D.I. (2024). Accidental oil spills in the Arctic: An assessment of potential soil damage. V. 27, str. 107–122. doi:10.37614/2220- 802X.3.2024.85.007.</unstructured_citation>
          </citation>
          <citation key="ref31">
            <unstructured_citation>Makinson, K.; Ashurst, D.; Anker, P.; Smith, J.; Hodgson, D.; Davis, P. and Smith, A. (2020). A new percussion hammer mechanism for a borehole deployable subglacial sediment corer. Annals of Glaciology. 61. 1-5. Doi.10.1017/aog.2020.83.</unstructured_citation>
          </citation>
          <citation key="ref32">
            <unstructured_citation>Zhang, Nan and Liu, Hui and Talalai, Pavel and Sun, Yuhong and Li, Na and Fan, Xiaopeng and Bing, Li and Gong, Da and Hong, Jialing and Wang, Ting and Liu, An and Yazhou, Li and Liu, Yunchen and Wang, Rusheng and Yang, Yang and Wang, Liang. (2020). New synthetic fiber armored cable for freeze-proof thermal probes. Annals of Glaciology. Vol. 62, p. 1-12. Doi.10.1017/aog.2020.74.</unstructured_citation>
          </citation>
          <citation key="ref33">
            <unstructured_citation>Lukin, V. and Vasiliev, N. (2014). Technological aspects of the final phase of drilling borehole 5G and unsealing Vostok Subglacial Lake, East Antarctica. Annals of Glaciology. 55(65). 83-89. Doi.10.3189/2014AoG65A002.</unstructured_citation>
          </citation>
          <citation key="ref34">
            <unstructured_citation>B. B. Kudryashov; N. I. Vasiliev; R. N. Vostretsov; A. N. Dmitriev; V. M. Zubkov; A.V. Krasilev; Talalay, P.; N. I. Barkov; Lipenkov V. and Petit J. (2002). Deep ice coring at Vostok Station (East Antarctica) by electromechanical drill. Memoirs of National Institute of Polar Research, Special Issue. Vol. 56, P. 91-102, ISSN: 0386-0744.</unstructured_citation>
          </citation>
          <citation key="ref35">
            <unstructured_citation>Peng, S.; Jiang, H.; Tang, I.; Li, C.; Li, H.; Huang, S. and Yu, H. (2021). Recoverble autonomous sonde for subglacial lake exploration: electronic control system design. Annals of Glaciology, 62(85-86), 263-279. doi:10.1017/aog.2021.1.</unstructured_citation>
          </citation>
          <citation key="ref36">
            <unstructured_citation>Shturmakov, A.; Lebar, D. and Bentley, K. (2017). DISC drill and replicate coring system: a new era in deep ice drilling engineering. Annals of Glaciology. Vol. 55, p. 189-198. Doi.10.3189/2014AoG68A017.</unstructured_citation>
          </citation>
          <citation key="ref37">
            <unstructured_citation>Zhang, N.; P. Talalay; J. Liu; S. Fan; C. Kong; H. Yu; B. Liu; D. Gong; S. Li; W. Wu; J. Hong and M. Sysoev . (2020). Antarctic Subglacial Drilling Rig: Part IV. Electrical and electronic control system. Annals of Glaciology 62, 34-45. DOI:10.1017/aog.2020.40.</unstructured_citation>
          </citation>
          <citation key="ref38">
            <unstructured_citation>Lee, I.; Hawley, R.; Bernsen, S.; Campbell, S.; Clemens-Sewall, D.; Herbie , K. and Hruby, K. (2019). A novel tilt sensor for studying ice deformation: application to streaming ice on Jarvis Glacier, Alaska. Journal of Glaciology. 66. 1-9. Doi.10.1017/jog.2019.84.</unstructured_citation>
          </citation>
          <citation key="ref39">
            <unstructured_citation>Doyle, S.; Hubbard, B.; Kristoffersen, P.; Young, T. J.; Hofstede, K.; Bugamont, M.; Box, J. and Hubbard, A. (2018). Physical conditions of a fast glacial flow: 1. Measurements from wells drilled to the floor of the Store Glacier, West Greenland. Journal of Geophysical Research: Surface of the Earth. 123. Doi.10.1002 / 2017JF004529.</unstructured_citation>
          </citation>
          <citation key="ref40">
            <unstructured_citation>Sterkhov, I. A., Kraev, N. A. and Denisova O. (2021). V Features of development of functional units of submerged blocks of borehole telemetry systems IEEE 2021 Conference of Young Russian Scientists in Electrical Engineering and Electronics (ElConRus), January 26-29, 2021, pp. 164- 167. DOI: 10.1109/ElConRus51938.2021.9396635 .</unstructured_citation>
          </citation>
          <citation key="ref41">
            <unstructured_citation>Vasiliev, N. I., Dmitriev, A. N., and Blinov, P. A., Drilling of a deep bore-hole at Vostok station (East Antarctica), Vestnik ONZ RAS, 2012, vol. 4. doi:10.2205/2012NZ000111.</unstructured_citation>
          </citation>
          <citation key="ref42">
            <unstructured_citation>E. A. Zagrivniy, D. A. Poddubniy and M. S. Kovalchuk, "Noncontact Speed Sensor for Maintaining the Autoresonant Operating Mode of the Oscillating Electric Motor Drive," 2019 IEEE Conference of Russian Young Researchers in Electrical and Electronic Engineering (EIConRus), Saint Petersburg and Moscow, Russia, 2019, pp. 740-743, doi: 10.1109/EIConRus.2019.8657094.</unstructured_citation>
          </citation>
          <citation key="ref43">
            <unstructured_citation>Bones, P.; Jansen, D.; Mundel, F.; K. K. Bauer; T. Binder; O. Eisen ; M. W. Jessell ; M. G. Llorens ; F. Steinbach; D. Steinhage and I. Vaikusat. (2016). Convergent flow and anisotropy cause large-scale folding in the Greenland ice sheet. Nat Commun 7, 11427. DOI:10.1038/ncomms11427</unstructured_citation>
          </citation>
          <citation key="ref44">
            <unstructured_citation>Gogolinsky, K. V. and Syasko, V. A. (2020). Metrological Assurance and Standardization of Advanced Tools and Technologies for nondestructive Testing and Condition Monitoring (NDT4.0). Research in the field of non-destructive testing, 31(5-6), 325-339. DOI: 10.1080 / 09349847.2020.1841863.</unstructured_citation>
          </citation>
          <citation key="ref45">
            <unstructured_citation>Mortensen, N.; Goetz, J.; Gibson, K.; Johnson, J. and Shturmakov, A. (2014). Replicate ice-coring system architecture: electrical, electronic and software design. Annals of Glaciology, 55(68), 156-164. Doi.10.3189/2014AoG68A014.</unstructured_citation>
          </citation>
          <citation key="ref46">
            <unstructured_citation>Moon, S. I. and Ekstrand, K. (2009). Water Vapor Permeation Resistance of Polycarbonate at Various Temperatures. Research in Industrial and Engineering Chemistry - IND ENG CHEM Res. Vol. 48. P.8961-8965. Doi: 10.1021/ie900842t.</unstructured_citation>
          </citation>
          <citation key="ref47">
            <unstructured_citation>Jacobsen, J.; Krogh, J.; Raimestad, L.; Riis, A. and Holm, A. (2014). Climate-protective packaging: Using basic physics to solve climatic challenges for electronics in demanding applications. Industrial Electronics Magazine, IEEE. 8. 51–59. Doi.10.1109/MIE.2014.2330912.</unstructured_citation>
          </citation>
          <citation key="ref48">
            <unstructured_citation>Ambat, R.; Jensen, S. and Moeller, P. (2008). Corrosion Reliability of Electronic Systems. ECS transactions. 6. Doi.10.1149/1.2900650.</unstructured_citation>
          </citation>
          <citation key="ref49">
            <unstructured_citation>Minzari, D.; Grumsen, F.; Ellesen, M.; Moeller, P. and Ambat, R. (2011). Electrochemical migration of tin in electronics and microstructure of dendrites. The science of corrosion-CORROS SCI. 53. 1659-1669. Doi.10.1016/j.corsci.2011.01.009.</unstructured_citation>
          </citation>
          <citation key="ref50">
            <unstructured_citation>Wang, H.; Liserre, M. and Blabjerg, F. (2013). Towards reliable power electronics: challenges, design tools, and opportunities. Journal of Industrial Electronics, IEEE. 7. 17– 26. Doi.10.1109/MIE.2013.2252958.</unstructured_citation>
          </citation>
          <citation key="ref51">
            <unstructured_citation>Yanlong, L.; Lei, S.; Lifeng, V. and Qiang, Z. (2020), Sensitivity analysis of drilling parameters in rock rotary drilling process based on orthogonal test method, Engineering Geology, Volume 270, 2020, 105576, ISSN 0013-7952. Doi: 10.1016/J.ENGGEO.2020.105576.</unstructured_citation>
          </citation>
          <citation key="ref52">
            <unstructured_citation>Xiaolei, S.; Wenjun, H. and Delhi, G. (2023). Mechanical models of drillstrings with drag reduction oscillators and optimal design methods of vibration parameters in horizontal drilling , Geoenergy Science and Engineering, Volume 224, 2023, 211585, doi.org/10.1016/j.geoen.2023.211585</unstructured_citation>
          </citation>
          <citation key="ref53">
            <unstructured_citation>Sike, M.; Min, W.; Lue-Feng, C. and Chengda, L. (2023). Design and application of weight-on-bit control system for drilling process: A variable-gain integrated controller with multiple-model parameter estimation, Control Engineering Practice, Vol. 130, 2023, DOI:10.1016/j.conengprac.2022.105378.</unstructured_citation>
          </citation>
          <citation key="ref54">
            <unstructured_citation>F. Shangxin; V. Yujie ; C. Golai ; C. Yufei ; V. Shanong ; C. Ruilang and S. Enshan . (2020). Estimation of optimal drilling efficiency and rock strength by using controllable drilling parameters in rotary nonpercussive drilling, Journal of Petroleum Science and Engineering, vol. 193, No. 107376, DOI:10.1016/j.petrol.2020.107376</unstructured_citation>
          </citation>
          <citation key="ref55">
            <unstructured_citation>J. WANG; J. LI; G. LIU; T. HUANG and H. YANG. (2019). Parameters optimization in deepwater dual-gradient drilling based on downhole separation, Petroleum Exploration and Development, Volume 46, Issue 4, 2019, Pages 819-825, DOI:10.1016/S1876- 3804(19)60240-5</unstructured_citation>
          </citation>
          <citation key="ref56">
            <unstructured_citation>Y. Qiao ; Y. Luo ; X. Shang и L. Zhou. (2024). An efficient drilling conditions classification method utilizing encoder and improved Graph Attention Networks, Geoenergy Science and Engineering, Volume 233, 2023, 212578, DOI:10.1016/j.geoen.2023.212578.</unstructured_citation>
          </citation>
        </citation_list>
      </journal_article>
    </journal>
  </body>
</doi_batch>