用鲁棒MIMO复位方法提高非线性压缩机系统效率

Yuanyuan Xu, Hai Gu, Jianhua Sun, Jie Zhang, Hashem Imani Marrani
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引用次数: 0

摘要

本文对压缩机系统的控制设计进行了分析,以说明其特点,提高效率。状态空间模型由Moore-Greitzer非线性方程构造。上游流量作为控制回路的一种紊乱,随着流量的变化,压缩机系统不能满足要求,因此控制器必须适应新的条件。由于控制信号通过非线性模型与系统输出相连接,因此采用复位控制器对压缩机系统进行控制。设计了符合PI + CI方法的鲁棒复位控制器。鲁棒控制器设计为多输入-多输出,使用两个节流阀控制阀和紧耦合阀执行器应用控制信号。两个复位控制器在压缩机系统结构中和谐结合,提供了遵循所需压力和流量状态的可能性。所提出的控制器除了可以防止喘振失稳外,还可以在任何干扰情况下稳定压缩机并提高其效率。仿真结果表明,该复位控制器具有良好的性能。证明了收敛速度随控制器参数的变化而变化。最后,在最恶劣的条件下,对控制器的稳定性进行了检验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency Improvement of Nonlinear Compressor System with Robust MIMO Reset Approach
In this study, a control design of the compressor system is analysed in order to demonstrate its characteristics and to improve efficiency. The state space model is constructed by the Moore-Greitzer nonlinear equations. Upstream flow acts as a control loop disorder and the compressor system cannot meet the requirements with flow variance, so it is essential that the controller adapts to the new conditions. Because the control signal is connected to the system output by a nonlinear model, a reset controller is used to control the compressor system. A robust reset controller has designed consistent with the PI + CI method. The robust controller is designed as multi-input-multi-output and uses two throttle control valve and close-coupled valve actuators to apply control signals. Two reset controllers with a harmonious combination in the structure of the compressor system provide the possibility of following the desired pressure and flow states. The proposed controller can stabilize the compressor and increase its efficiency in the event of any disturbance in addition to preventing surge instability. The simulation results show that the reset controller can provide good performance. It is proved that the convergence rate changes with changes in the controller parameters. Finally, the stability of the controller is examined under the most severe conditions.
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来源期刊
EEA - Electrotehnica, Electronica, Automatica
EEA - Electrotehnica, Electronica, Automatica Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
26
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