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Design and implement of a low cost control system of active magnetic bearings using LabVIEW Interface for Arduino

机译:使用Arduino的LabVIEW接口设计和实现有源电磁轴承的低成本控制系统

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In this research, a low cost control system of active magnetic bearings (AMB) has been designed and implemented using LabVIEW Interface for Arduino (LIFA). This study consists of analog signals acquisition, converting the analog signals into the digital signal (ADC), digital data processing, drawing real-time curve and historical curve of signals, pulse-width modulated (PWM) drive and PID control system. The Arduino acquires the signals of rotor displacement and transmits them directly into the PC with LabVIEW Interface for Arduino (LIFA). The computer with NI LabVIEW calculates the signals with the PID closed-loop control and gives the output with PWM. Because of the disadvantages of the Arduino and LabVIEW, the AMB control system can be built and work well in a simple and cost effective way. The construction of this AMB control system platform and the availability and easiness of using both Arduino and LabVIEW allow interested users to implement and extend the AMB control system platform and other system platforms based on their own need and interests.
机译:在这项研究中,使用Arduino的LabVIEW接口(LIFA)设计并实现了一种低成本的有源电磁轴承(AMB)控制系统。这项研究包括模拟信号采集,将模拟信号转换为数字信号(ADC),数字数据处理,绘制信号的实时曲线和历史曲线,脉宽调制(PWM)驱动器和PID控制系统。 Arduino获取转子位移信号,并将其直接通过LabVIEW Arduino接口(LIFA)传输至PC。使用NI LabVIEW的计算机通过PID闭环控制来计算信号,并通过PWM提供输出。由于Arduino和LabVIEW的缺点,因此可以以简单且经济高效的方式构建AMB控制系统并使其运行良好。该AMB控制系统平台的构建以及同时使用Arduino和LabVIEW的可用性和易用性,使感兴趣的用户可以根据自己的需要和兴趣来实现和扩展AMB控制系统平台和其他系统平台。

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