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An Adaptive-Predictive control scheme with dynamic Hysteresis Modulation applied to a DC-DC buck converter

机译:具有动态滞后调制的自适应预测控制方案,应用于DC-DC降压转换器

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This article proposes a recent Adaptive-Predictive (AP) control technique applied to a DC-DC buck converter. This converter topology has a wide range of applications in the current electronic and electrical systems that demand an efficient use of low bus voltage and specific requirements in load current consumption. Nevertheless, this converter, and in general any DC-DC converter topology, presents a control challenge due to its nonlinear nature. Hence, in this article, it is proposed an adaptive-predictive control scheme that has low implementation complexity and improves the buck converter performance since it provides a fast response of the output voltage. Moreover, the output is adequately regulated even when the system is subjected to perturbations in the reference voltage, in the input voltage, in the load or in the converter parameters that may be seen as faults in the system. On the other hand, one of the main contributions of the proposed control technique with respect to other controllers is that the AP control scheme allows to on-line infer the parametric status of the plant thanks to its adaptive stage. In addition, a dynamic Hysteresis Modulator (HM) is properly inserted in the control strategy to improve the dynamic behavior of the Adaptive Mechanism (AM), and in general, of the entire closed-loop control performance. To validate the effectiveness of the control design, a wide range of numerical experiments are carried out by using Matlab/Simulink. Finally, the developed control technique was implemented in a benchmark experimental platform. According to the experimental results, the proposed predictive control is suitable for real scenarios in the power electronics applications. (C) 2020 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了最近应用于DC-DC降压转换器的自适应预测性(AP)控制技术。该转换器拓扑在当前的电子和电气系统中具有广泛的应用,要求有效地利用低总线电压和负载电流消耗的特定要求。然而,这种转换器和一般任何DC-DC转换器拓扑结构都是由于其非线性性质引起的控制挑战。因此,在本文中,提出了一种自适应预测控制方案,其实现复杂性低,提高了降压转换器性能,因为它提供了输出电压的快速响应。此外,即使当系统在参考电压的扰动中,在输入电压,负载中或转换器参数中也可以被视为系统中的故障时,该输出也是充分调节的。另一方面,所提出的控制技术关于其他控制器的主要贡献之一是AP控制方案允许通过其自适应阶段在线推断工厂的参数状态。另外,在控制策略中正确地插入动态滞后调制器(HM)以改善整个闭环控制性能的自适应机制(AM)的动态行为。为了验证控制设计的有效性,通过使用MATLAB / SIMULINK进行广泛的数值实验。最后,开发的控制技术在基准实验平台中实现。根据实验结果,所提出的预测控制适用于电力电子应用中的实际情况。 (c)2020 ISA。 elsevier有限公司出版。保留所有权利。

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