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Design of gain scheduling control strategy for artificial gas lift in oil production through modified relay feedback test

机译:通过改进的继电反馈试验设计人工采油气举增益调度控制策略。

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Artificial gas lift technology is widely used in oil production to sustain oil flow from the well to the surface when reservoir pressure drops. Dynamic model that describes artificial gas lift system is highly nonlinear, which makes the controller design for this system not an easy task. A dynamic model of this system is further detailed with respect to the models available in the literature to account for the depth of the well. Two approaches to controller design are implemented: the first one is based on the local linearization in a number of operating (equilibrium) points that are characterized by different gas flow set points; the other approach is based on the use of the modified relay feedback test (MRFT) applied incrementally in different operating points. In both approaches, the controller is designed as a gain-scheduled PI controller. (C) 2015 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:人工气举技术广泛用于石油生产中,以在储层压力下降时维持油从井流到地表。描述人工举升系统的动态模型是高度非线性的,这使得该系统的控制器设计变得不容易。相对于文献中可用的模型,将对该系统的动态模型进行进一步详细说明,以说明井的深度。实现了两种控制器设计方法:第一种是基于多个工作点(平衡点)的局部线性化,这些工作点具有不同的气体流量设定点;另一种方法是基于改进的继电器反馈测试(MRFT)的使用,该改进的继电器反馈测试逐渐应用于不同的工作点。在这两种方法中,控制器都设计为增益预定的PI控制器。 (C)2015富兰克林研究所。由Elsevier Ltd.出版。保留所有权利。

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