A review of torsional vibration mitigation techniques using active control and machine learning strategies

Aditya Sharma , Khizar Abid , Saket Srivastava , Andres Felipe Baena Velasquez , Catalin Teodoriu

Petroleum ›› 2024, Vol. 10 ›› Issue (3) : 411 -426.

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Petroleum ›› 2024, Vol. 10 ›› Issue (3) :411 -426. DOI: 10.1016/j.petlm.2023.09.007
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A review of torsional vibration mitigation techniques using active control and machine learning strategies
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Abstract

Drilling is one of the most challenging and expensive processes in hydrocarbon extraction and geothermal well development. Dysfunctions faced during drilling can increase the non-productive time (NPT) greatly, resulting in inflating the drilling cost and also pose a safety concern. One of the main problems faced during drilling that limits the life of drilling equipment and tools and decreases the overall productivity of the system is drilling vibrations. These vibrations can be categorized into three modes: axial, lateral, and torsional. Stick-slip vibrations are a type of torsional vibration in which the bottom hole assembly (BHA) periodically stops to rotate followed by a spike in the bottom hole RPM. This paper provides a comprehensive review of techniques used to control and mitigate torsional vibration with an emphasis on stick-slip. A brief introduction to drillstring and friction modeling is presented followed by a concise summary of passive control techniques to control stick-slip. Then the focus is shifted to an up-to-date review of active control and machine learning for stick-slip control and mitigation. The paper ultimately highlights the importance of adapting novel control and mitigation concepts to improve stick slip detection and improve the overall drilling process. A unique solution is insufficient to control a complex process such as drilling, but integration of various techniques has been found promising.

Keywords

Drilling vibrations / Controllers / Mitigations strategies / Stick slip / Torsional vibrations / Machine Learning

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Aditya Sharma, Khizar Abid, Saket Srivastava, Andres Felipe Baena Velasquez, Catalin Teodoriu. A review of torsional vibration mitigation techniques using active control and machine learning strategies. Petroleum, 2024, 10(3): 411-426 DOI:10.1016/j.petlm.2023.09.007

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Declaration of competing interest

The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Acknowledgment

The authors would like to thank Helmerich and Payne Inc. for their support in the development of the OU Drilling Vibrations Laboratory.

References

[1]

C. Zou, Z. Yang, G. Zhang, L. Hou, R. Zhu, S. Tao, X. Yuan, d. Dong, Y. Wang, Q. Guo, L. Wang, H. Bi, D. Li, N. Wu, Conventional and unconventional petroleum “orderly accumulation”: concept and practical significance, Pet. Explor. Dev. (2014) 14-30.

[2]

G. Han, L. Lemesany, A.A. Azizov, F. DeLeon, Bottomhole assembly result analysis to improve drilling performance in Pinedale Field, Wyoming, USA, in: SPE Unconventional Resources Conference Canada, Calgary, 2013.

[3]

G. Dong, P. Chen, A Review of the Evaluation, Control, and Application Technologies for Drill String Vibrations and Shocks in Oil and Gas Well, Hindawi, 2016.

[4]

J.W. Rector, B.P. Marion, The use of drill-bit energy as a downhole seismic source, Geophysics (1991) 598-730.

[5]

F. Abbassian, V. Dunayevsky, Application of stability approach to torsional and lateral bit dynamics, SPE Drill. Complet. (1998) 99-107.

[6]

H. Reckmann, P. Jogi, F. Kpetehoto, S. Chandrasekaran, J. Macpherson,MWD failure rates due to drilling dynamics, in:IADC/SPE Drilling Conference and Exhibition, 2010.

[7]

J. Macpherson, J. Mason, J. Kingman, Surface measurement and analysis of drill-string vibrations while drilling, in: SPE/IADC Drilling Conference, Amsterdam, 1993.

[8]

S. Jardine, S. Malone, M. Sheppard, Putting a damper on drilling's bad vibrations, Oilfield Rev. (1994) 15-20.

[9]

W. Tucker, C. Wang, An integrated model for drill-string dynamics, J. Sound Vib. (1999) 123-165.

[10]

Y. Li, J. Wang, Y. Shan, C. Wang, Y. Hu, Measurement and analysis of downhole drill string, Appl. Sci. (2021).

[11]

H. Ahmadian, S. Nazari, H. Jalali, Drill string vibration modeling including coupling effects, IUST Int. J. Eng. Sci. (2007) 59-66.

[12]

P.A. Patil, C. Teodoriu, A comparative review of modeling and controlling torsional vibrations, J. Petrol. Sci. Eng. (2013) 227-238.

[13]

A. Ghasemloonia, D. Rideout, S.D. Butt, A review of drillstring vibration modeling and suppression methods, J. Petrol. Sci. Eng. (2015) 150-164.

[14]

T. Feng, S. Bakshi, Q. Gu, Z. Yan, D. Chen, Design optimization of bottom-hole assembly to reduce drilling vibration, J. Petrol. Sci. Eng. (2019) 921-929.

[15]

F.A.A. Sairafi, K.E. Al Ajmi, A.S. Yigit, A.P. Christoforou, Modeling and control of stick slip and bit bounce in oil well drill strings, in: SPE/IADC Middle East Drilling Technology Conference and Exhibition, Abu Dhabi, 2016.

[16]

D.K. Ashley, X.M. McNary, J.C. Tomlinson,Extending BHA life with multi-axis vibration measurements, in:SPE/IADC Drilling Conference, 2001.

[17]

W. Chin, Wave Propagation in Petroleum Engineering, Gulf Publishing Co., Houston, 1994.

[18]

X. Zhu, W. Liu, The effects of drill string impacts on wellbore stability, J. Petrol. Sci. Eng. (2013) 217-229.

[19]

Q. Xue, H. Leung, L. Huang, R. Zhang, B. Liu, J. Wang, L. Li, Modeling of torsional oscillation of drillstring dynamics, Nonlinear Dyn. (2019) 267-283.

[20]

S.X. Wu, L. Paez, U. Partin, M. Agnihotri, Decoupling stick-slip and whirl to achieve breakthrough in drilling performance, in: IADC/SPE Drilling Conference and Exhibition, New Orleans, 2010.

[21]

R.I. Leine, D.H.v. Campen, W.J.G. Keultjes, Stick-slip whirl interaction in drillstring dynamics, J. Vib. Acoust. (2002) 209-220.

[22]

J. Jansen, Non-linear rotor dynamics as applied to oilwell drillstring vibrations, J. Sound Vib. (1991) 115-135.

[23]

J.K. Vandiver, J.W. Nicholson, R.-J. Shyu, Case studies off the bending vibration and whirling motion off drill collars, SPE Drill. Eng. 5 (1990) 282-290.

[24]

J.J. Thomsen, Vibrations and Stability, Springer, Berlin, 2003.

[25]

J.R. Bailey, E.A.O. Biediger, V. Gupta, D. Ertas, W.C. Elks, F.E. Dupriest, Drilling vibrations modeling and field validation, in: IADC/SPE Drilling Conference, Orlando, 2008.

[26]

E. Robnett, J. Hood, G. Heisig, J. Macpherson, Analysis of the stick-slip phenomenon using downhole, in: SPE/IADC Drilling Conference, Amsterdam, 1999.

[27]

J.F. Brett, The genesis of torsional drillstring vibrations, SPE Drill. Eng. 7 (1992) 168-174.

[28]

P. Kriesels, W. Keultjes, P. Dumont, I. Huneid, O. Owoeye, R.A. Hartmann,Cost savings through an integrated approach to drillstring vibration control, in:Middle East Drilling Technology Conference, 1999.

[29]

M.-P. Dufeyte, H. Henneuse, Detection and monitoring of the slip-stick motion: field experiments,in:SPE/IADC Drilling Conference, Amsterdam, Netherlands, 1991.

[30]

A. Sharma, S. Srivastava, C. Teodoriu, Experimental design, instrumentation, and testing of a laboratory-scale test rig for torsional vibrationsdthe next generation, Energies 13 (18) (2020) 4750.

[31]

R.A. Cunningham, Analysis of downhole measurements of drill string forces and motions, J. Eng. Ind. (1968) 208-216. ASME.

[32]

G. Halsey, A. Kyllingstad, T. Aarrestad, D. Lysne, Drillstring torsional vibrations: comparison between theory and experiment on a full-scale research drilling rig,in:Annual Technical Conference and Exhibition, New Orleans, 1986.

[33]

A. Ghasemloonia, D.G. Rideout, S.D. Butt, Analysis of multi-mode nonlinear coupled axial-transverse drillstring vibration in vibration assisted rotary drilling, J. Petrol. Sci. Eng. (2014) 36-49.

[34]

A. Ghasemloonia, D.G. Rideout, S.D. Butt, Coupled transverse vibration modeling of drillstrings subjected to torque and spatially varying axial load, J. Mech. Eng. Sci. 227 (5) (2012).

[35]

P.D. Spanos, L.B. Ryon, A.M. Chevallier, N.P. Politis, Nonlinear stochastic drillstring vibrations, J. Vib. Acoust. (2002) 512-518.

[36]

X. Jin, N.G. Koya, Investigation of warping effect on coupled torsional-axial vibration of drilling tool, Int. J. Adv. Manuf. Technol. (2016) 2961-2974.

[37]

J. Jansen, L. van den Steen, Active damping of self-excited torsional vibrations in oil well drillstrings, J. Sound Vib. 179 (4) (1995) 647-668.

[38]

B. Saldivar, I. Boussaada, H. Mounier, S. Mondié, S.I. Niculescu,An overview on the modeling of oilwell drilling vibrations, IFAC Proc. Vol. 47 (3) (2014) 5169-5174.

[39]

B. Saldivar, S. Mondié, S.I. Niculescu, H. Mounier, I. Boussaada, A control oriented guided tour in oilwell drilling vibration modeling, Annu. Rev. Control 42 (2016) 100-113.

[40]

Y.-Q. Lin, Y.-H. Wang, Stick-slip vibration of drill strings, J. Eng. Ind. 113 (1) (1991) 38-43.

[41]

F. Abdulgalil, H. Siguerdidjane,Backstepping design for controlling rotary drilling system, in:Proceedings of 2005 IEEE Conference on Control Applications, 2005.

[42]

E.M. Navarro-López, D. Cortés, Sliding-mode control of a multi-DOF oilwell drillstring with stick-slip oscillations, in: American Control Conference, New York, NY, USA, 2007.

[43]

T.V. Aarrestad, H. Tonnesen, A. Kyllingstad, Drillstring vibrations: comparison between theory and experiments on a full-scale research drilling rig,in:IADC/SPE Drilling Conference, Dallas, Texas, 1986.

[44]

R.W. Tucker, C. Wang, On the effective control of torsional vibrations in drilling systems, J. Sound Vib. 224 (1) (1999) 101-122.

[45]

N. Challamel, Rock destruction effect on the stability of a drilling structure, J. Sound Vib. 233 (2) (2000) 235-254.

[46]

C. Sagert, F. Di Meglio, M. Krstic, P. Rouchon,Backstepping and flatness approaches for stabilization of the stick-slip phenomenon for drilling, IFAC Proc. Vol. 46 (2) (2013) 779-784.

[47]

D. Bresch-Pietri, M. Krstic, Adaptive output feedback for oil drilling stick-slip instability modeled by wave PDE with anti-damped dynamic boundary, in: 2014 American Control Conference, Portland, OR, 2014.

[48]

B. Armstrong-Hélouvry, P. Dupont, C.C. De Wit, A survey of models, analysis tools and compensation methods for the control of machines with friction, Automatica 30 (7) (1994) 1083-1138.

[49]

M.J. Fear, F. Abbassian, S.H.L. Parfitt, A. McClean, The destruction of PDC bits by severe slip-stick vibration, in: SPE/IADC Drilling Conference, Amsterdam, Netherlands, 1997.

[50]

S.S. Janwadkar, D.G. Fortenberry, G.K. Roberts, M. Kramer, D.K. Trichel, T. Rogers, S.A. Privott, B. Welch, M.R. Isbell, BHA and drillstring modeling maximizes drilling performance in lateral wells of Barnett Shale gas field of N. Texas, in: SPE Gas Technology Symposium, Calgary, Alberta, Canada, 2006.

[51]

J.R. Bailey, S.M. Remmert, Managing drilling vibrations through BHA design optimization, SPE Drill Complet. 25 (4) (11 November 2010) 458-471.

[52]

M.F. Mahyari, M. Behzad, G.R. Rashed, Drill string instability reduction by optimum positioning of stabilizers, J. Mech. Eng. Sci. 224 (3) (2010) 647-653.

[53]

A. Jaggi, S. Upadhaya, A.R. Chowdhury, Successful PDC/RSS vibration management using innovative depth-of-cut control technology: Panna Field, Offshore India, in:SPE/IADC Drilling Conference, 2007. Amsterdam, The Netherlands.

[54]

B. Ortiz, C. Casallas, H. Parra, Improved bit stability reduces downhole harmonics (vibrations), in: SPE/IADC Asia Pacific Drilling Technology, Kuala Lumpur, Malaysia, 1996.

[55]

S.L. Chen, K. Blackwood, E. Lamine, Field Investigation of the Effects of Stick-Slip, Lateral, and Whirl Vibrations on Roller-Cone Bit Performance, SPE, 2002, pp. 15-20.

[56]

Z. Huang, D. Xie, B. Xie, W. Zhang, F. Zhang, L. He, Investigation of PDC bit failure base on stick-slip vibration analysis of drilling string system plus drill bit, J. Sound Vib. 417 (1) (2018) 97-109.

[57]

J. Tian, Y. Zhou, L. Yang, S. Hu, Analysis of stick-slip reduction, J. Multi-Body Dyn. 1 (234) (2020) 82-94.

[58]

J. Tian, L. Wei, L. Yang, L. Dai, T. Zhang, H. Liu, Research and experimental analysis of drill string dynamics characteristics and stick-slip reduction mechanism, J. Mech. Sci. Technol. 3 (34) (2020) 977-986.

[59]

P. Sananikone, O. Kamoshima, D. White, A field method for controlling drillstring torsional vibrations, in: IADC/SPE Drilling Conference, New Orleans, Louisiana, 1992.

[60]

D. Pavone, J. Desplans, Application of high sampling rate downhole measurements for analysis and cure of stick-slip in drilling, in: SPE Annual Technical Conference and Exhibition, New Orleans, Louisiana, 1994.

[61]

F. Efteland, A. Creegan, L. Jordan, C. Caraway, The significance of pro-active online monitoring with stick-slip mitigation, in: Bu Dhabi International Petroleum Exhibition and Conference, Abu Dhabi, UAE, 2015.

[62]

S.K. Vogel, A.P. Creegan, Case study for real time stick/slip mitigation to improve drilling performance, in: SPE/IADC Middle East Drilling Technology Conference and Exhibition, Abu Dhabi, UAE, 2016.

[63]

G. Halsey, A. Kyllingstad, A. Kylling, Torque feedback used to cure slip-stick motion, in: SPE Annual Technical Conference and Exhibition, Houston, Texas, 1988.

[64]

J. Nicholson, An integrated approach to drilling dynamics planning, identification, and control, in: IADC/SPE Drilling Conference, Dallas, Texas, 1994.

[65]

N. Shuttleworth, E. van Kerkoerle, D. Folmer, N. Foekema, Revised drilling practices, VSS-MWD tool successfully addresses catastrophic bit/drillstring vibrations, in: IADC/SPE Drilling Conference, Dallas, Texas, 1998.

[66]

A.F.A. Serrarens, M.J.G. van de Molengraft, J.J. Kok, L. van den Steen, H∞ control for suppressing stick-slip in oil well drillstrings, IEEE Control Syst. Mag. (1998) 19-30.

[67]

A. Yigit, A. Christoforou, Coupled axial and transverse vibrations of oilwell drillstrings, J. Sound Vib. (1996) 617-627.

[68]

A. Yigit, A. Christoforou, Coupled torsional and bending vibrations of actively controlled drillstrings, J. Sound Vib. (2000) 67-83.

[69]

A.P. Christoforou, A.S. Yigit, Active control of stick-slip vibrations: the role of fully coupled dynamics, in: SPE Middle East Oil Show, Manama, Bahrain, 2001.

[70]

S. Al-Hiddabi, B. Samanta, A. Seibi, Non-linear control of torsional and bending vibrations of oilwell drillstrings, J. Sound Vib. (2003) 401-415.

[71]

A.S. Yigit, A.P. Christoforou, Stick-slip and bit-bounce interaction in oil-well drillstrings, J. Energy Resour. Technol. (2006) 268-274.

[72]

M. Zamanian, S. Khadem, M. Ghazavi, Stick-slip oscillations of drag bits by considering damping of drilling mud and active damping system, J. Petrol. Sci. Eng. (2007) 289-299.

[73]

E.M. Navarro-López, E. Licéaga-Castro, Non-desired transitions and slidingmode control of a multi-DOF mechanical system with stick-slip oscillations, Chaos Solit. Fractals (2009) 2035-2044.

[74]

C. Canudas-de-Wit, F.R. Rubio, M. Angel Corchero, D-OSKIL: A new mechanism for controlling stick-slip oscillations in oil well drillstrings, IEEE Trans. Control Syst. Technol. 16 (6) (2008) 1177-1191.

[75]

H. Puebla, J. Alvarez-Ramirez, Suppression of stick-slip in drillstrings: a control approach based on modeling error compensation, J. Sound Vib. 310 (4-5) (2008) 881-901.

[76]

Å. Kyllingstad, P.J. Nessjøen, A new stick-slip prevention system, in: SPE/IADC Drilling Conference and Exhibition, Amsterdam, The Netherlands, 2009.

[77]

Å. Kyllingstad, P.J. Nessjøen, Hardware-In-the-Loop simulations used as a cost efficient tool for developing an advanced stick-slip prevention system, in: IADC/SPE Drilling Conference and Exhibition, New Orleans, Louisiana, USA, 2010.

[78]

P.J. Nessjøen, Å. Kyllingstad, P. D'Ambrosio, I.S. Fonseca, A. Garcia, B. Levy, Field experience with an active stick-slip prevention system, in: SPE/IADC Drilling Conference and Exhibition, Amsterdam, The Netherlands, 2011.

[79]

E.M. Navarro-López, An alternative characterization of bit-sticking phenomena in a multi-degree-of-freedom controlled drillstring, Nonlinear Anal. R. World Appl. 10 (5) (2009) 3162-3174.

[80]

M. Karkoub, M. Zribi, L. Elchaar, L. Lamont, Robust m-synthesis controllers for suppressing stick-slip induced vibrations in oil well drill strings, Multibody Syst. Dyn. 23 (2) (2010) 191-207.

[81]

E. Omojuwa, S. Osisanya, R. Ahmed, Dynamic analysis of stick-slip motion of drillstring while drilling, in: Nigeria Annual International Conference and Exhibition, Abuja, Nigeria, 2011.

[82]

E. Omojuwa, S. Osisanya, R. Ahmed, Measuring and controlling torsional vibrations and stick-slip in a viscous-damped drillstring model, in: International Petroleum Technology Conference, Bangkok, Thailand, 2011.

[83]

J. Rudat, D. Dashevskiy, Development of an innovative model-based stick/slip control system, in: SPE/IADC Drilling Conference and Exhibition, Amsterdam, The Netherlands, 2011.

[84]

M.T. Bayliss, N. Panchal, J. Whidborne,Rotary steerable directional drilling stick/slip mitigation control, IFAC Proc. Vol. (2012) 66-71.

[85]

F. Bu, J. Dykstra, Indirect adaptive robust controller design for drilling rotary motion control, in: Dynamic Systems and Control Conference, San Antonio, Texas, USA, 2014.

[86]

M.W. Harris, B. Açıkmes¸ e, E. van Oort, LMI based control of stick-slip oscillations in drilling, in: Dynamic Systems and Control Conference, San Antonio, Texas, USA, 2014.

[87]

T.G.M. Vromen, N. van de Wouw, A. Doris, P. Astrid, H. Nijmeijer, Observerbased output-feedback control to eliminate torsional drill-string vibrations, in: 53rd IEEE Conference on Decision and Control, Los Angeles, CA, USA, 2014.

[88]

T. Vromen, C.-H. Dai, N. van deWouw, T. Oomen, P. Astrid, H. Nijmeijer, Robust output-feedback control to eliminate stick-slip oscillations in drillstring systems, IFAC-PapersOnLine 48 (6) (2015) 266-271.

[89]

T. Vromen, C.-H. Dai, N. van de Wouw, T. Oomen, P. Astrid, A. Doris, H. Nijmeijer, Mitigation of torsional vibrations in drilling systems: a robust control approach, IEEE Trans. Control Syst. Technol. 27 (1) (2019) 249-265.

[90]

Y. Liu, Suppressing stick-slip oscillations in underactuated multibody drillstrings with parametric uncertainties using sliding-mode control, IET Control Theory Appl. 9 (1) (2015) 91-102.

[91]

L. Hong, I.P. Girsang, J.S. Dhupia, Identification and control of stickeslip vibrations using Kalman estimator in oil-well drill strings, J. Petrol. Sci. Eng. (2016) 119-127.

[92]

B. Besselink, T. Vromen, N. Kremers, N. van de Wouw, Analysis and control of stick-slip oscillations in drilling systems, IEEE Trans. Control Syst. Technol. 24 (5) (2016) 1582-1593.

[93]

J. Kabzinski, Adaptive control of drillstring torsional oscillations, IFACPapersOnLine 50 (1) (2017) 13360-13365.

[94]

C. Pehlivantürk, D. Chen, E. van Oort, Torsional drillstring vibration modelling and mitigation with feedback control, in: SPE/IADC Drilling Conference and Exhibition, The Hague, The Netherlands, 2017.

[95]

T. Feng, H. Zhang, D. Chen, Dynamic programming based controllers to suppress stick-slip in a drilling system, in: 2017 American Control Conference (ACC), Seattle, WA, USA, 2017.

[96]

H.I. Basturk, Observer-based boundary control design for the suppression of stickeslip oscillations in drilling systems with only surface measurements, J. Dyn. Syst. Meas. Control 139 (10) (2017).

[97]

M.A. Kamel, S. Elkatatny, M.F. Mysorewala, A. Al-Majed, M. Elshafei, Adaptive and real-time optimal control of stickeslip and bit wear in autonomous rotary steerable drilling, J. Energy Resour. Technol. 140 (3) (2018) 032908 (12 pages).

[98]

V. Vaziri, M. Kapitaniak, M. Wiercigroch, Suppression of drill-string stickeslip vibration by sliding mode control: numerical and experimental studies, Eur. J. Appl. Math. (2018) 805-825.

[99]

V. Vaziri, I.O. Oladunjoye, M. Kapitaniak, S.S. Aphale, M. Wiercigroch, Parametric analysis of a sliding-mode controller to suppress drill-string stick-slip vibration, Meccanica (2020) 2475-2492.

[100]

M. Fu, P. Zhang, J. Li, Y. Wu, Observer and reference governor based control strategy to suppress stick-slip vibrations in oil well drill-string, J. Sound Vib. (2019) 37-50.

[101]

Q. Zhang, S. Xv, Stick-slip vibration suppression of drill string based on fractional order PID, in: International Conference on Computer Network, Electronic and Automation (ICCNEA), Xi'an, China, 2019.

[102]

R. Caponetto, Fractional Order Systems: Modeling and Control Applications, vol. 72, World Scientific, 2010.

[103]

J. Cheng, M. Wu, F. Wu, C. Lu, X. Chen, W. Cao, Modeling and control of drillstring system with stick-slip vibrations using LPV technique, IEEE Trans. Control Syst. Technol. (2020) 718-730.

[104]

J.D.J. MacLean, V. Vaziri, S.S. Aphale, M. Wiercigroch, Feedback control method to suppress stick-slip in drill-strings featuring delay and actuation constraints, Eur. Phys. J. Spec. Top. (2021) 3627-3642.

[105]

M. Derbal, M. Gharib, S.S. Refaat, A. Palazzolo, S. Sassi, Fractional-order controllers for stick-slip vibration mitigation in oil well drill-strings, J. Low Freq. Noise (2021) 1571-1584.

[106]

A. Krama, M. Gharib, S.S. Refaat, A. Palazzolo, Design and hardware in-theloop validation of an effective super-twisting controller for stick-slip suppression in drill-string systems, J. Dyn. Syst. Meas. Control 143 (11) (2021) 111008 (12 pages).

[107]

R. Riane, M.Z. Doghmane, M. Kidouche, S. Djezzar, Observer-based H∞ controller design for high frequency stick-slip vibrations mitigation in drillstring of rotary drilling systems, Vibration 5 (2) (2022) 264-289.

[108]

R. Riane, M.Z. Doghmane, M. Kidouche, K.F. Tee, S. Djezzar, Stick-slip vibration suppression in drill string using observer-based LQG controller, Sensors 22 (16) (2022) 5979.

[109]

A. Laib, B. Talbi, A. Krama, M. Gharib, Hybrid interval type-2 fuzzy PID+I controller for a multi-DOF oilwell drill-string system, IEEE Access 10 (2022) 67262-67275.

[110]

E. Detournay, T. Richard, M. Shepherd, Drilling response of drag bits: theory and experiment, Int. J. Rock Mech. Min. Sci. 45 (8) (2008) 1347-1360.

[111]

T. Richard, C. Germay, E. Detournay, A simplified model to explore the root cause of stickeslip vibrations in drilling systems with drag bits, J. Sound Vib. 305 (3) (2007) 432-456.

[112]

M. Kapitaniak, V.V. Hamaneh, J.P. Chávez, K. Nandakumar, M. Wiercigroch, Unveiling complexity of drillestring vibrations: experiments and modelling, Int. J. Mech. Sci. 101 (2015) 324-337.

[113]

E.D. Christian,Identifying the optimum zone for reducing drill string vibrations, in:SPE Annual Technical Conference and Exhibition, 2017.

[114]

C. Hegde, H. Millwater, K. Gray, Classification of drilling stick slip severity using machine learning, J. Petrol. Sci. Eng. 179 (2019) 1023-1036.

[115]

T. Goebel, R.V. Molina, V. Ricardo and K. D. Gupta,Method and system for predicting a drill string stuck pipe event. United States of America Patent 8,752,648, 2014.

[116]

G. Chen, M. Chen, G. Hong, Y. Lu, B. Zhou, Y. Gao, A new method of lithology classification based on convolutional neural network algorithm by utilizing drilling string vibration data, Energies 13 (4) (2020) 888.

[117]

S. Srivastava, R.N. Shah, C. Teodoriu, Natural language processing based information extraction from drilling reports to classify drilling dysfunction severity, in: Geothermal Resources Council, Stanford, 2021.

[118]

W. Chen, Y. Yu, Y. Shen, Z. Zhang, V. Vesselinov,Automatic drilling dynamics interpretation using deep learning, in:SPE Annual Technical Conference and Exhibition, 2019.

[119]

C.E. Shannon, A mathematical theory of communication, Bell Syst. Tech. J. 27 (3) (1948) 379-423.

[120]

Y. Zha, S. Pham, Monitoring downhole drilling vibrations using surface data through deep learning, in: SEG Technical Program Expanded Abstracts, 2018.

[121]

J. Zhao, Y. Shen, W. Chen, Z. Zhang, S. Johnston,Machine learningebased trigger detection of drilling events based on drilling data, in:SPE Eastern Regional Meeting, 2017.

[122]

E. Millan, M. Ringer, R. Boualleg, D. Li,Real-Time drillstring vibration characterization using machine learning, in:SPE/IADC International Drilling Conference and Exhibition, 2019.

[123]

M. Ignova, J. Matheus, D. Amaya, E. Richards,Recognizing abnormal shock signatures during drilling with help of machine learning, in:SPE Middle East Oil and Gas Show and Conference, 2019.

[124]

A. Alsaihati, A. Mahmoud, E. Salaheldin, D.A. Shehri, Application of machine learning methods in modeling the loss of circulation rate while drilling operation, ACS Omega 7 (24) (2022) 20696-20709.

[125]

S. Srivastava, R.N. Shah, C. Teodoriu, A. Sharma, Impact of data quality on supervised machine learning: case study on drilling vibrations, J. Petrol. Sci. Eng. 219 (2022).

[126]

T. Baumgartner, E.v. Oort, Pure and coupled drill string vibration pattern recognition in high frequency downhole data, in: SPE Annual Technical Conference and Exhibition, OnePetro, 2014.

[127]

S. Srivastava, An Experimental, Modeling and Machine Learning Based Investigation of Stick-Slip Vibrations, University of Oklahoma, 2022. https://hdl.handle.net/11244/336022.

[128]

J. Salamon, J.P. Bello, Deep convolutional neural networks and data augmentation for environmental sound classification, IEEE Signal Process. Lett. 24 (2017) 279-283, https://doi.org/10.1109/LSP.2017.2657381.

[129]

L. Tang, B. Guo, X. Zhu, C. Shi, Y. Zhou, Stickeslip vibrations in oil well drillstring: a review, J. Low Freq. Noise Vib. Act. Control 39 (4) (2020) 885-907.

[130]

A. Sharma, S. Srivastava, C. Teodoriu, M. Stan, Experimental Comparison of PID Based RPM Control for Long Horizontal vs. Vertical Drillstring, Preprints, 2021.

[131]

S. Srivastava, A. Sharma, C. Teodoriu, Optimizing sampling frequency of surface and downhole measurements for efficient stick-slip vibration detection, Petroleum (2023).

[132]

R. Saadeldin, G. Hany, E. Salaheldin, A. Abdulazeez, Intelligent model for predicting downhole vibrations using surface drilling data during horizontal drilling, J. Energy Resour. Technol. 144 (8) (2022).

[133]

A. Kyllingstad, A comparison of stick-slip mitigation tools, in: SPE/IADC Drilling Conference and Exhibition, The Hague, The Netherlands, 2017.

[134]

U.J.F. Aarsnes, F. di Meglio, R.J. Shor, Benchmarking of industrial stick-slip mitigation controllers, IFAC-PapersOnLine 51 (8) (2018) 233-238.

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