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A novel tube model predictive control for surge instability in compressor system including piping acoustic

机译:一种新型管模型预测控制,用于压缩机系统中的电涌不稳定,包括管道声学

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摘要

Tube model predictive control (MPC) is one of a few suitable techniques for robust stabilization of disturbed nonlinear systems subject to constraints. This paper introduces the integration of H _(∞) control scheme into a robust tube MPC control algorithm for surge prevention in centrifugal compressor system in the presence of bounded disturbances. Nonlinear dynamic of compression system is considered that contains acoustic of compressor system and brings up the effects of the station’s piping system on the compressor surge. Also, close-coupled valve is selected as actuator for the surge control system. The proposed method is composed of two controllers: a nominal MPC controller which solves a standard surge problem for the nominal system, and an ancillary MPC controller from H _(∞) control approach to stabilize the states despite disturbances. Numerical simulation results verify the capability of the proposed surge control method and guaranty the asymptotic stability of compression system in the presence of disturbances.
机译:管模型预测控制(MPC)是用于受影响的受干扰非线性系统的稳健稳定的少数合适技术之一。本文介绍了在存在有界干扰的情况下对离心式压缩机系统浪费管MPC控制算法的稳健管MPC控制算法的集成。考虑了压缩系统的非线性动态,其中包含压缩机系统的声学,并为电站的管道系统对压缩机浪涌的影响。此外,选择闭合阀作为浪涌控制系统的致动器。所提出的方法由两个控制器组成:一个标称MPC控制器,该控制器解决了标称系统的标准浪涌问题,以及来自 H _(∞)控制方法的辅助MPC控制器尽管有干扰,但是尽管有干扰,但是稳定状态。数值仿真结果验证了所提出的浪涌控制方法的能力,并保证了扰乱存在下压缩系统的渐近稳定性。

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