Experimental verification of new energy saving position control algorithm for AC drives

P. Minarech, J. Vittek, V. Vavrúš, P. Makys
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引用次数: 1

Abstract

The paper describes development of a new energy saving control algorithms for precise position control for AC drives. Designed control algorithms limit energy consumption for defined rotor position maneuver, increase efficiency of the drive and contribute to the substantial improvements of environment. Overall position control system consists of three parts. As the first part, the `minimum energy generator' computes a special acceleration, velocity and position profile, where the magnitude and time of acceleration or deceleration are determined such a way that comply with position demand and prescribed time for position maneuver. The role of `feed-forward precompensator', as a second part, is to achieve precise tracking of the prescribed reference position with zero dynamic lag. Third part is position controller, which can be based on field oriented control, forced dynamics control or sliding mode control. Developed `energy saving control algorithms' are easy to implement digitally and can be exploited for position control of existing a.c. drives.
交流变频器新节能位置控制算法的实验验证
本文介绍了一种新的节能控制算法的发展,用于交流驱动器的精确位置控制。设计的控制算法限制了转子位置机动的能量消耗,提高了驱动效率,大大改善了环境。总体位置控制系统由三部分组成。作为第一部分,“最小能量发生器”计算一个特殊的加速度、速度和位置轮廓,其中加速或减速的大小和时间是按照符合位置需求和规定的位置机动时间来确定的。作为第二部分,“前馈预补偿器”的作用是在零动态滞后的情况下实现对指定参考位置的精确跟踪。第三部分是位置控制器,它可以基于场定向控制、强制动态控制或滑模控制。开发的“节能控制算法”易于数字化实现,可用于现有交流驱动器的位置控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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