基于阻尼优化的钻柱转速控制状态控制器和观测器设计

Matija Krznar, D. Pavković, Mihael Cipek, D. Zorc, Davor Kolar, D. Kotarski
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引用次数: 0

摘要

在石油钻井过程中,由于工具与岩石的粘滑摩擦和钻柱的扭转顺应性,钻柱电气驱动容易产生严重的扭转振动,这可能导致钻井系统关键部件的机械故障和过度磨损。因此,钻柱电气驱动需要配备主动减振功能。本文提出了一种基于状态变量滤波方法直接估计不可测状态变量的全阶状态控制器,它可以很好地用于扭转振动的主动阻尼。通过对不同钻柱配置的仿真,验证了所提控制系统设计的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damping Optimum-based Design of State Controller and Observer for Drill-String Rotary Speed Control
During petroleum drilling, the drill-string electrical drive is prone to significant torsional vibrations caused by tool vs. rock stick-slip friction and drill-string torsional compliance, which may cause mechanical failure and excessive wear of critical parts of the drilling system. Hence, the drill-string electrical drive needs to be equipped with active vibration damping functionality. This paper presents the development of a full-order state controller based on straightforward estimation of un-measurable state variables by means of state variable filtering approach, which may be well-suited for torsional vibrations active damping purposes. The effectiveness of the proposed control system design is verified by means of simulations for different drill-string configurations.
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