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Effects of quantization, delay and internal resistances in digitally zad-controlled buck converter

机译:数字Zad控制的降压转换器中量化,延迟和内阻的影响

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摘要

Zero Average Dynamics (ZAD) strategy has been reported in the last decade as an alternative control technique for power converters, and a lot of work has been devoted to analyze it. From a theoretical point of view, this technique has the advantage that it guarantees fixed switching frequency, low output error and robustness, however, no high correspondence between numerical and experimental results has been obtained. These differences are basically due to model assumptions; in particular, all elements in the circuit were modeled as ideal elements and simulations and conclusions about steady state stability and transitions to chaos have been carried out with this ideal model. Regarding the practical point of view and the digital implementation, we include in this paper internal resistances, quantization effects and 1-period delay to the model. This paper shows in an experimental and numerical way the effects of these elements to the model and their incidence in the results. Now, experimental and numerical analyses fully agree.
机译:零平均动力学(ZAD)策略在过去十年中已被报道作为功率转换器的替代控制技术,并且已经进行了大量工作来对其进行分析。从理论上讲,该技术的优点是可以保证固定的开关频率,低输出误差和鲁棒性,但是,在数值和实验结果之间没有获得很高的对应性。这些差异基本上是由于模型假设造成的;特别是,电路中的所有元件都被建模为理想元件,并且利用该理想模型对稳态稳定性和过渡到混沌进行了仿真和结论。关于实用的观点和数字实现,我们在本文中包括模型的内部电阻,量化效应和1周期延迟。本文以实验和数值方式显示了这些元素对模型的影响及其在结果中的影响。现在,实验和数值分析完全同意。

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