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Control strategy for AC servo motion drive system with mechanically resonant load and its design approach

机译:具有机械共振负载的交流伺服运动驱动系统的控制策略及其设计方法

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This paper describes the construction of an observer-based brushless DC motor drive control system with a mechanical resonant load and an optimum design method. At first, the construction of a motor drive control system which has a load speed feedback loop using a new type of observer is proposed. The observer has two features. The first is that it is possible to detect the load speed accurately even if the load disturbance torque changes. The second is that it is not necessary to allocate the roots of the observer. For this reason, it is very easy to apply this observer to the servo system with a mechanical resonant load as a component of a load speed feedback loop. Next, its design method, to which is applied a parameter ultimate sensitivity method based on the partial model matching method, is proposed. This method has a feature that it is possible to secure both the response and the stability of the servo system by setting only one parameter, α. All roots of the characteristic equation of the servo system can be allocated inside the fan shaped region located on the negative side of the real axis in the complex plane under all conditions. Finally, from the simulation results, the effectiveness of the construction of the observer-based servo control system and its optimum design method are proved adequate.
机译:本文介绍了基于观察者的具有机械共振负载的无刷直流电动机驱动控制系统的构造和最佳设计方法。首先,提出了一种使用新型观察器的具有负载速度反馈回路的电动机驱动控制系统的构造。观察者具有两个特征。首先,即使负载干扰转矩发生变化,也可以准确地检测出负载速度。第二个是不必分配观察者的根。因此,很容易将此观察器应用于具有机械共振负载作为负载速度反馈回路组成部分的伺服系统。接下来,提出了其设计方法,该方法应用了基于局部模型匹配方法的参数极限灵敏度方法。该方法的特征在于,通过仅设置一个参数α,可以确保伺服系统的响应性和稳定性。在所有情况下,都可以将伺服系统特征方程的所有根分配在复平面中位于实轴负侧的扇形区域内。最后,从仿真结果证明了基于观测器的伺服控制系统的构造及其优化设计方法的有效性。

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