首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Magnetic Suspension Actuator Control in Ball and Beam System Demonstration
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Magnetic Suspension Actuator Control in Ball and Beam System Demonstration

机译:球和梁系统演示中的磁悬浮执行器控制

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摘要

This paper presents a backstepping control implementation on magnetic suspension actuators to demonstrate a ball and beam system performance. A magnetic suspension actuator is located on side of the beam for up and down operation to control the ball position. Characteristics on the magnetic suspension actuator are studied from the design concept to construct a ball and beam system. The mathematical model of the system, was derived via the La-grangian function. The magnetic force as a function of position and coil current was measured and modeled by a quadratic function. A control law was developed following backstepping control procedures. To implement this ball and beam system, a linear feedback sensor and control circuit is designed and fabricated using a single chip microprocessor with basic electronic circuits as the control kernel. The ball and beam system is tested on both static and dynamic performance, especially in oscillatory stabilization and sinusoidal tracking.
机译:本文介绍了在磁悬浮执行器上的反推控制实现,以演示球和梁系统的性能。磁悬浮致动器位于横梁的侧面,用于上下操作以控制球的位置。从设计概念出发研究了磁悬浮执行器的特性,以构造一个球和梁系统。该系统的数学模型是通过拉格朗日函数导出的。磁力作为位置和线圈电流的函数,通过二次函数进行测量和建模。遵循反向控制程序制定了控制律。为了实现此球和光束系统,使用基本电子电路作为控制内核的单芯片微处理器设计和制造了线性反馈传感器和控制电路。球杆系统经过静态和动态性能测试,尤其是在振荡稳定和正弦跟踪方面。

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