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Two-motor direct drive control for elevation axis of telescope

机译:望远镜仰角两电机直接驱动控制

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Two-motor application has become a very attractive filed in important field which high performance is permitted to achieve of position, speed, and acceleration. In the elevation axis of telescope control system, two-motor direct drive is proposed to enhance the high performance of tracking control system. Although there are several dominant strengths such as low size of motors and high torsional structural dynamics, the synchronization control of two motors is a very difficult and important. In this paper, a muti-loop control technique base master-slave current control is used to synchronize two motors, including current control loop, speed control loop and position control loop. First, the direct drive function of two motors is modeled. Compared of single motor direct control system, the resonance frequency of two motor control systems is same; while the anti-resonance frequency of two motors control system is 1.414 times than those of sing motor system. Because of rigid coupling for direct drive, the speed of two motor of the system is same, and the synchronization of torque for motors is critical. The current master-slave control technique is effective to synchronize the torque, which the current loop of the master motors is tracked the other slave motor. The speed feedback into the input of current loop of the master motors. The experiments test the performance of the two motors drive system. The random tracking error is 0.0119" for the line trajectory of 0.01° /s.
机译:在允许允许实现位置,速度和加速度的高性能的重要领域中,两电机应用已成为非常有吸引力的领域。在望远镜控制系统的俯仰轴上,提出了两电机直接驱动以增强跟踪控制系统的高性能。尽管有几个主要优势,例如电机尺寸小和扭转结构动力学特性高,但是两个电机的同步控制却是非常困难且重要的。在本文中,基于多回路控制技术的主从电流控制被用于使两个电动机同步,包括电流控制回路,速度控制回路和位置控制回路。首先,对两个电动机的直接驱动功能进行了建模。与单电机直接控制系统相比,两个电机控制系统的谐振频率相同。两电机控制系统的反共振频率是单电机系统的反共振频率的1.414倍。由于采用直接驱动的刚性联轴器,因此系统的两个电动机的速度相同,因此电动机的转矩同步至关重要。当前的主从控制技术可有效地使转矩同步,从而使主电动机的电流回路跟踪到另一个从电动机。速度反馈到主电机电流回路的输入中。实验测试了两个电机驱动系统的性能。对于0.01°/ s的线轨迹,随机跟踪误差为0.0119“。

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