基于卡尔曼滤波最优控制器的工业尺寸压缩机主动磁轴承设计

Michael Nato Andrety, A. Malik, Dzuhri Radityo Utomo, A. Cahyadi
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引用次数: 1

摘要

防喘振控制器在工业大型压缩机系统中起着避免喘振现象发生的重要作用。这种防喘振控制器可以使用一种称为主动磁轴承(AMB)的组件来构建,与传统轴承相比,它还可以为整个压缩机系统提供更好的效率。电磁轴承由推力磁轴承(TMB)和径向磁轴承(RMB)两部分组成。本文的讨论将主要集中在针对工业规模压缩机系统的基于AMB的防喘振控制器中必不可少的RMB控制器系统的设计。RMB控制器系统由LQR控制器、卡尔曼滤波和压缩机自动跳闸系统3个主要部分组成。RMB控制器系统有助于稳定转子径向位置,在转子径向位移偏离标称值太远时保护压缩机系统。仿真结果表明,该系统具有良好的转子径向位置稳定性能。仿真结果还表明,当转子位移超出允定值时,压缩机自动跳闸系统能够正确地生成相应的输出命令。
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Design of Active Magnetic Bearing for Industrial Size Compressor System using Kalman Filter Based Optimal Controller
Anti-surge controller has a very important role in industrial size compressor system to avoid the occurrence of a surge phenomenon. This anti-surge controller can be constructed using a component known as Active Magnetic Bearing (AMB), which can also provide a better efficiency for the overall compressor system compared the conventional bearing. The AMB consists of two components, a thrust magnetic bearing (TMB), and a radial magnetic bearing (RMB). The discussion presented in this paper will mainly focus on the design of the proposed RMB controller system, which is essential in AMB based anti-surge controller, for the industrial size compressor system. The RMB controller system consists of 3 main components, LQR controller, Kalman filter, and automatic compressor trip system. The RMB controller system helps to stabilize the rotor radial position and protect the compressor system when the rotor radial displacement is too far from its nominal value. The simulation result shows that the proposed system has a good performance to stabilize the rotor radial position. The simulation result also shows that the automatic compressor trip system can properly generate an appropriate output command when the rotor displacement is outside the permitted value.
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