Model predictive control with a fixed switching frequency for an AC-to-AC converter

M. Tomlinson, T. Mouton, R. Kennel, P. Stolze
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引用次数: 26

Abstract

This paper discusses the control of an AC-to-AC converter that forms part of an 11 kV electronic voltage regulator. A novel finite-set model predictive control technique is presented to allow fixed frequency switching. A fixed switching period is defined and divided into smaller evaluation steps. The switching behaviour is obtained by using the analogy of PWM with a triangular carrier wave. During the first half of the switching period, the system may only switch from the on-state to the off-state and during the second half, only from the off-state to the on-state. To account for the repetitive nature of the switching waveform, an average receding horizon prediction method is introduced. An anticipated prediction is made by calculating the average value for one switching period ahead, according to the position and state in the current switching period. The method presented good practical results and proved to be effective in maintaining a fixed switching frequency.
基于固定开关频率的交流-交流变换器模型预测控制
本文讨论了构成11kv电子稳压器一部分的交流-交流变换器的控制。提出了一种新的有限集模型预测控制技术,实现定频切换。定义了一个固定的切换周期,并将其划分为更小的评估步骤。开关特性是用三角形载波类比PWM得到的。在切换周期的前半段,系统只能从导通状态切换到关断状态,在后半段,系统只能从关断状态切换到导通状态。考虑到切换波形的重复性,引入了平均后退视界预测方法。根据当前开关时段的位置和状态,提前计算一个开关时段的平均值,进行预期预测。该方法具有良好的实际应用效果,可以有效地保持固定的开关频率。
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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