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Cyclic Repetitive Control of CVCF PWM DC–AC Converters

机译:CVCF PWM DC-AC转换器的循环重复控制

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摘要

In this paper, a cyclic repetitive control (CYRC) scheme is developed and applied to a constant-voltage constant-frequency (CVCF) pulse width modulation (PWM) converter to achieve high tracking accuracy with less consumption of memory space. In this scheme, a novel cyclic sampling strategy is adopted by a down-sampled repetitive controller. The cyclic sampling strategy, which shifts the sampling points every cycle, can provide fractional-order phase lead compensation and enlarge the stability margin. And the gain of the CYRC controller can be increased to decrease the tracking error. With much less memory space consumption, the steady-state tracking performance of CYRC is comparable to that of conventional repetitive control, and is much better than down-sampled repetitive control. The stability criterion, as well as the realization of the CYRC scheme are discussed in detail. Comparison experiments with different controllers are performed in different load situations, and the results demonstrate the effectiveness of the CYRC scheme.
机译:本文开发了一种循环重复控制(CYRC)方案,并将其应用于恒压恒频(CVCF)脉宽调制(PWM)转换器,以实现较高的跟踪精度,并减少了存储空间的消耗。在该方案中,下采样的重复控制器采用了新颖的循环采样策略。循环采样策略可在每个周期移动采样点,可以提供分数阶相位超前补偿并扩大稳定性裕量。并且可以增加CYRC控制器的增益以减少跟踪误差。与更少的内存空间消耗相比,CYRC的稳态跟踪性能可与传统重复控制相媲美,并且比下采样重复控制要好得多。详细讨论了稳定性准则以及CYRC方案的实现。在不同的负载情况下使用不同的控制器进行了比较实验,结果证明了CYRC方案的有效性。

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