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Rotor levitation by Active Magnetic Bearings using Fuzzy Logic Controller

机译:主动磁悬浮轴承悬浮的模糊逻辑控制器

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Active Magnetic Bearings(AMB) have many advantages such as no friction loss, no abrasion, lubrication-free quality, and used for high rotational speed applications. A complete system consists of an actuator, power amplifier, a rotor position sensor and a control system. In this paper, a closed loop decentralized Fuzzy Logic control for Active magnetic Bearings is designed. For the numerical evaluation of control algorithm a MIMO (multiple input multiple output) mathematical model of the controlled plant is determined. The majority of industrial applications of active magnetic bearings were still based on conventional PID control system. The proposed control design is based on rule based procedure. It has been shown, that the presented FL control guarantees satisfactory high damping, low parameter variations and measurement noise of the overall system. With this FL control we are able to maintain the rotor in center position in the final steady state.
机译:主动电磁轴承(AMB)具有许多优点,例如无摩擦损耗,无磨损,无润滑质量,并且可用于高转速应用。完整的系统由执行器,功率放大器,转子位置传感器和控制系统组成。本文设计了一种主动磁悬浮轴承的闭环分散模糊逻辑控制。为了对控制算法进行数值评估,确定了受控设备的MIMO(多输入多输出)数学模型。有源电磁轴承的大多数工业应用仍基于常规的PID控制系统。所提出的控制设计基于基于规则的程序。已经表明,提出的FL控制保证了整个系统令人满意的高阻尼,低参数变化和测量噪声。通过这种FL控制,我们可以将转子保持在最终稳定状态的中心位置。

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