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A Simple Control Approach for Buck Converters With Current-Constrained Technique

机译:采用电流限制技术的Buck转换器的简单控制方法

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摘要

The output voltage tracking problem with overcurrent protection for a pulse width modulation-based dc–dc buck converter is investigated in this brief. On the one hand, large transient current during the start-up phase is required for fast dynamics. On the other hand, overlarge transient current may lead to a risk of hardware damage. Conventionally, this problem is solved by choosing conservative control parameters, while the dynamic performance is sacrificed to a certain extent. Besides, the load uncertainty is inevitable in practical applications. Hence, a control design that keeps a good balance between dynamic performance, overcurrent protection, and robustness is desired. To this end, a novel and simple current-constrained controller is constructed. Both dynamic performance and current constraint are taken into account. The low complexity of the proposed current-constrained controller yields a higher reliability of dc–dc buck converter control system, and reduces cost of hardware. Moreover, it shows a nice property of robustness against load uncertainty. Control action is penalized by adjusting controller gains automatically when inductor current tends to the barrier bound. Rigorous stability analysis is given under the presented controller. Comparative simulation and experimental results between the proposed control scheme and the classic proportion–integration–differentiation control scheme on the buck converter system are illustrated to verify the feasibility and effectiveness of the proposed control scheme.
机译:本文简要研究了基于脉冲宽度调制的dc-dc buck转换器的过电流保护输出电压跟踪问题。一方面,在启动阶段需要大的瞬态电流以实现快速动态。另一方面,过大的瞬态电流可能会导致硬件损坏的风险。通常,通过选择保守的控制参数来解决该问题,同时在一定程度上牺牲了动态性能。此外,在实际应用中不可避免地存在负载不确定性。因此,需要一种在动态性能,过电流保护和鲁棒性之间保持良好平衡的控制设计。为此,构建了新颖且简单的电流限制控制器。同时考虑了动态性能和电流限制。所提出的电流受限控制器的低复杂度产生了dc-dc buck转换器控制系统的更高可靠性,并降低了硬件成本。而且,它表现出了很好的鲁棒性,可以抵抗负载不确定性。当电感电流趋于势垒界限时,通过自动调节控制器增益来惩罚控制动作。在给出的控制器下进行了严格的稳定性分析。通过对所提出的控制方案与经典的比例积分微分控制方案进行降压变换器系统的比较仿真和实验结果,验证了所提出的控制方案的可行性和有效性。

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