Design of a gain matrix for a sliding mode observer for an artificial gas lift system

Mohammad Luai Hammadih, K. Al Hosani, I. Boiko
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引用次数: 3

Abstract

An Artificial gas lift system is an existing technology in the oil sector; which utilizes the fact that a pressure differential exists in the reservoir's tubing leading to enhanced oil recovery from the reservoir. Studies were conducted to control this process as it improves the stability and performance of gas lift. The current industrial practice depends on flow measurement as a process variable, yet, it does not depend on the measurements which would be obtained several kilometers below the ground that are technically difficult to approach due to several limitations such as huge pressures. Proper knowledge of the states would leads to a better controller design for this system. In this paper, a methodology towards the design of a sliding mode observer is investigated. The purpose of the observer is to acquire the states of a nonlinear system representing the physical system of a gas lift process in oil wells. The proposed design of an observer is based only on measurements taken above the surface.
人工气举系统滑模观测器增益矩阵的设计
人工气举系统是石油行业的一项现有技术;该技术利用了储层油管中存在压力差的事实,从而提高了储层的采收率。为了控制这一过程,研究人员进行了研究,以提高气举的稳定性和性能。目前的工业实践依赖于作为过程变量的流量测量,然而,它并不依赖于由于巨大压力等限制而在技术上难以接近的地下几公里处的测量。适当的状态知识将导致更好的控制器设计的系统。本文研究了滑模观测器的设计方法。观测器的目的是获取代表油井气举过程物理系统的非线性系统的状态。所提出的观测者的设计仅基于在地面上进行的测量。
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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