This article proposes a control strategy to stabilize the axial-torsional dynamics of a distributed drill-string system. An infinite-dimensional model for the vibrational dynamics of the drill string is used as a basis for controller design. In this article, both the cutting process and frictional contact effects are considered in the bit-rock interaction model. Moreover, models for the top-side boundary conditions regarding axial and torsional actuation are considered. The resulting model is formulated in terms of neutral-type delay differential equations that involve constant state delays, state-dependent state delays, and constant input delays arising from the distributed nature of the drill-string dynamics and the cutting process at the...
This paper involves the dynamic (stability) analysis of distributed drill-string systems. A minimal ...
International audienceIn drilling operation, a wide variety of oscillations causing failures often a...
This paper presents active vibration control to reduce the stick-slip oscillations in drill-strings....
This article proposes a control strategy to stabilize the axial-torsional dynamics of a distributed ...
Self-excited vibrations in drill-string systems are one of the main causes of failure and efficiency...
Vibrations in deep drilling systems lead to efficiency deterioration and may even cause the system f...
This article proposes an active control strategy to suppress self-excited coupled axial-torsional vi...
Stick-slip vibrations decrease the performance, reliability, and fail safety of drilling systems. Th...
Torsional stick-slip vibrations decrease the performance and reliability of drilling systems used fo...
This paper considers the design of a nonlinear observer-based output-feedback controller for oil-fie...
This paper proposes feedback control strategies for the mitigation of torsional stick-slip oscillati...
Stick-slip vibrations decrease the performance, reliability, and fail safety of drilling systems. Th...
The vibration of drill strings is a well-known source of undesirable disturbance in drilling operati...
This paper involves the dynamic (stability) analysis of distributed drill-string systems. A minimal ...
International audienceIn drilling operation, a wide variety of oscillations causing failures often a...
This paper presents active vibration control to reduce the stick-slip oscillations in drill-strings....
This article proposes a control strategy to stabilize the axial-torsional dynamics of a distributed ...
Self-excited vibrations in drill-string systems are one of the main causes of failure and efficiency...
Vibrations in deep drilling systems lead to efficiency deterioration and may even cause the system f...
This article proposes an active control strategy to suppress self-excited coupled axial-torsional vi...
Stick-slip vibrations decrease the performance, reliability, and fail safety of drilling systems. Th...
Torsional stick-slip vibrations decrease the performance and reliability of drilling systems used fo...
This paper considers the design of a nonlinear observer-based output-feedback controller for oil-fie...
This paper proposes feedback control strategies for the mitigation of torsional stick-slip oscillati...
Stick-slip vibrations decrease the performance, reliability, and fail safety of drilling systems. Th...
The vibration of drill strings is a well-known source of undesirable disturbance in drilling operati...
This paper involves the dynamic (stability) analysis of distributed drill-string systems. A minimal ...
International audienceIn drilling operation, a wide variety of oscillations causing failures often a...
This paper presents active vibration control to reduce the stick-slip oscillations in drill-strings....