Minimum strain energy waypoint-following controller for directional drilling using OGH curves

Neilkunal Panchal, M. Bayliss, J. Whidborne
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引用次数: 3

Abstract

Directional drilling has become increasingly important as a means for better exploitation of oil and gas reservoirs as well as part of a drive to increase the level of automation in the industry. Typically, a well plan is created for a variety of reasons, such as maximizing productive drilling, minimizing well tortuosity, collision avoidance, or navigating the tool to strategic points within a pay zone. Following a nominal well plan created to satisfy these requirements whilst drilling leads to a clear need for automated trajectory-controlled drilling. This paper builds on the authors' earlier work on generalized attitude control of directional drilling to develop a path-following algorithm incorporating optimized geometric Hermite space curves as a means of generating the correction path from the instantaneous tool position to the well plan whilst minimizing the drillstring strain energy. The proposed scheme is tested in simulation and shown to perform satisfactorily for a typical set of drilling operating parameters for converging towards a target position and attitude.
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基于OGH曲线的定向钻井最小应变能路径点跟踪控制器
定向钻井作为一种更好地开发油气储层的手段,以及提高行业自动化水平的一部分,已经变得越来越重要。通常,制定井计划的原因有很多,比如最大化钻井产量、最小化井曲度、避免碰撞,或者将工具导航到产层内的战略点。在钻井过程中,为了满足这些要求而制定的标称井计划导致了对自动轨迹控制钻井的明显需求。本文以作者早期在定向钻井广义姿态控制方面的工作为基础,开发了一种路径跟踪算法,该算法结合了优化的几何Hermite空间曲线,作为生成从瞬时工具位置到井平面的修正路径的手段,同时最小化钻柱应变能。该方案已在模拟中进行了测试,结果表明,对于一组典型的钻井操作参数,该方案能够令人满意地收敛到目标位置和姿态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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