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On Active Surge Control of Compression Systems Via Characteristic Linearization and Model Nonlinearity Cancellation

机译:基于特征线性化和模型非线性抵消的压缩系统主动喘振控制

摘要

A simple approach of active surge control of compression systems is presented. Specifically, nonlinear components of the pressure ratio and rotating speed states of the Moore-Greitzer model are transferred into the input vectors. Subsequently, the compressor characteristic is linearized into two modes, which describe the stable region and the unstable region respectively. As a result, the system\u27s state and input matrices both appear linear, to which linear realization and analysis are applicable. A linear quadratic regulator plus integrator is then chosen as closed-loop controller. By simulation it was shown that the modified model and characteristics can describe surge behavior, while the closed-loop controller can stabilize the system in the unstable operating region. The last-mentioned was achieved when massflow was 5.38 per cent less than the surge point.
机译:提出了一种压缩系统主动喘振控制的简单方法。具体而言,将摩尔比-格里策模型的压力比和转速状态的非线性分量转移到输入向量中。随后,将压缩机特性线性化为两种模式,分别描述稳定区域和不稳定区域。结果,系统的状态矩阵和输入矩阵都显示为线性,线性实现和分析都适用。然后选择一个线性二次调节器加积分器作为闭环控制器。通过仿真表明,修改后的模型和特性可以描述喘振行为,而闭环控制器可以使系统稳定在不稳定的工作区域。当质量流量比喘振点低5.38%时,实现了最后一种。

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