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A torque estimator-based control strategy for oil-well drill-string torsional vibrations active damping including an auto-tuning algorithm

机译:基于扭矩估计器的油井钻柱扭转振动主动阻尼控制策略,包括自动调谐算法

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Considerable compliance of the lengthy oil-well drill string combined with low tool inertia and stick-slip friction between the tool and the rock bed causes notable undesired torsional vibrations of the drill-string electrical drive. In order to attenuate the torsional vibrations and, thus, improve both the quality and the productivity of the drilling process, an automatically tuned active damping control strategy based on drill-string torque estimation is proposed in the paper. The core of the strategy includes a proportional-integral (PI) controller extended with estimator-based drill-string torque feedback loop. Furthermore, an appropriate algorithm that prevents drill-string back-spinning caused by the limited braking power of the power converter is presented. Finally, an auto-tuning algorithm is proposed, which is built around an adaptive Kalman filter-based estimator of drill-string drive natural frequencies. The drill-string control strategy is verified experimentally using a drill string hardware-in-the-loop setup under the laboratory conditions, as well as on an actual oil-drilling rig.
机译:漫长的油井钻柱的柔顺性加上较低的工具惯性以及工具与岩床之间的粘滑摩擦,会导致钻柱电驱动装置出现明显的不良扭转振动。为了减小扭转振动,从而提高钻孔过程的质量和生产率,提出了一种基于钻柱扭矩估算的自动调节主动阻尼控制策略。该策略的核心包括一个比例积分(PI)控制器,该控制器扩展了基于估算器的钻柱扭矩反馈回路。此外,提出了一种适当的算法,可以防止由于功率转换器的有限制动功率而导致的钻柱反向旋转。最后,提出了一种自动调谐算法,该算法围绕钻柱驱动固有频率的基于自适应卡尔曼滤波器的估计器建立。在实验室条件下以及在实际的石油钻探设备上,使用钻柱硬件在环设置对钻柱控制策略进行了实验验证。

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