具有速度输入的开关伺服系统的非线性分析技术

H. Farrah
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引用次数: 1

摘要

理论上,在开关模式下运行的伺服系统可以获得最佳的瞬态响应。虽然相位平面技术可以产生位置输入的最优系统,但表明相位平面分析对于1型伺服控制的速度输入是无效的。提出了一种新的方法,该方法可以在速度输入时获得最佳的切换过程,而在位置输入时保持有效性。由此产生的系统具有速度和位置输入的稳态误差为零的特性,并且不需要超过两个切换周期就可以将误差返回为零。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A non-linear analysis technique for an on-off servo with velocity inputs
Optimum transient response can theoretically be obtained with a servo system operated in an on-off mode. Although phase plane techniques can produce an optimum system for positional inputs, it is shown that a phase plane analysis is invalid for velocity inputs for a type 1 control servo. A novel approach to the problem is presented which permits an optimum switching procedure to be obtained for velocity inputs, while validity is retained for positional inputs. The resulting system has the properties that the steady state error for both velocity and positional inputs is zero, and no more than two switching cycles are ever needed to return the error to zero.
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