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Modelling and Extremum Seeking Control of Gas Lifted Oil Wells

机译:气举油井建模与极值搜索控制

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This paper addresses the design of a perturbation-based extremum seeking control (ESC) method to maintain the oil production around the optimum point of the well-performance curve in gas lifted wells. The method uses periodic perturbation which is injected into the plant with intention to extract the information about the gradient of the well-performance curve. A simple nonlinear dynamic model is proposed and the essential dynamics of the Eikrem's model are captured, i.e., the transient behavior and the optimal steady state well- performance curve. Based on this simple model, a pre-compensation is developed which allows the application of the ESC scheme without reducing excessively the perturbation frequency. The control performance is evaluated via numerical simulations using an appropriate environment for modelling, simulation and optimization (EMSO) of process dynamic systems.
机译:本文介绍了一种基于扰动的极值搜寻控制(ESC)方法的设计,该方法可将采油量保持在气举井中油井性能曲线的最佳点附近。该方法使用周期性扰动,该扰动被注入到植物中,目的是提取有关井眼性能曲线梯度的信息。提出了一个简单的非线性动力学模型,并捕获了Eikrem模型的基本动力学,即瞬态行为和最佳稳态性能曲线。基于此简单模型,开发了一种预补偿,该预补偿允许应用ESC方案而不会过度降低扰动频率。通过使用适当的环境对过程动态系统进行建模,仿真和优化(EMSO)的数值模拟,可以评估控制性能。

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