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Research on the flow control strategy of water distributor in Water Injection Well

机译:注水井配水器流量控制策略研究

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The technological process of the water distributor flow deployment has mixed features of strong non-linearity, tough interference of multilayer coupling and complex models in Water Injection Well. The traditional model-based control strategies cause many problems (e.g. system instability, high time-consuming deployment, pressure built up in pipeline), which make it difficult to meet the expected requirements of technological process. In this paper, a novel PID-NN control strategy is proposed to solve the problems. The controller's performance has been optimized by the strategy in three aspects as follows: modeling non-linear-controlled object, decoupling parameters of flow and pressure and improving efficiency and accuracy of the controller. The simulation results and pilot experiments of test well illustrate that this strategy improves the robustness and response speed of the system, and also proves this controller can handle multivariate decoupling problem of the technological process of the water distributor flow deployment.
机译:注水井水分配器配水的工艺过程具有非线性强,多层耦合干扰强,模型复杂等特点。传统的基于模型的控制策略会导致许多问题(例如系统不稳定,高耗时的部署,管道中积压),这使得难以满足工艺流程的预期要求。本文提出了一种新颖的PID-NN控制策略来解决该问题。该策略通过以下三个方面优化了控制器的性能:对非线性控制对象进行建模,对流量和压力进行解耦参数以及提高控制器的效率和精度。仿真结果和试井实验表明,该策略提高了系统的鲁棒性和响应速度,并证明了该控制器能够解决配水流流程技术过程的多元解耦问题。

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