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Magnetic Bearing Control System based on PI and PID Controllers

机译:基于PI和PID控制器的电磁轴承控制系统

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This paper describes the implementation of magnetic bearings and their active control system. The working principle of the special combined axial and radial magnetic bearings and their implementation is explained. The overall laboratory system consists of two magnetic bearings with their housings, the suspended shaft and control system with sensors and power electronics. Sensor electronics are used to measure the position of the shaft within a bearing and to determine the appropriate bearing current with outer position control loops and nested current control loops. The motor control board featuring the TMS320F28335 DSP and LDC1000 proximity sensors is used for control and power electronics. In order to implement the control system the X2C tool is used. This is an open source model based development and code generation tool embedded in the Scilab/Xcos environment. The sensor data acquisition time is optimized to increase the speed of the control system.
机译:本文介绍了电磁轴承及其主动控制系统的实现。解释了特殊组合轴向和径向电磁轴承的工作原理及其实现。整个实验室系统由两个带有轴承座的磁性轴承,悬挂轴以及带有传感器和电力电子设备的控制系统组成。传感器电子设备用于测量轴在轴承中的位置,并通过外部位置控制环和嵌套电流控制环确定合适的轴承电流。带有TMS320F28335 DSP和LDC1000接近传感器的电机控制板用于控制和电力电子设备。为了实施控制系统,使用了X2C工具。这是嵌入在Scilab / Xcos环境中的基于开源模型的开发和代码生成工具。优化了传感器数据采集时间,以提高控制系统的速度。

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