Bifurcation and stability analysis of a Dual-Active-Bridge dc-dc converter working under non-linear control

Franzese Pasquale, S. Meo, L. Toscano
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Abstract

The Dual-Active-Bridge dc-dc converter is increasingly used in different fields of power electronics. This converter has different advantages compared to other topologies but can run into its operating range in areas of instability that limit its application. For this reason, the paper develops an accurate discrete large-signal sampled-data model of the controlled converter, then it carries out a stability and bifurcation analysis of the system to determine guidelines to increase the stability region of the controlled system. The control strategy is a discrete non-linear method based on the linearization of Jacobian matrixes. Then the tuning of regulator is a dynamic pole placement implemented using root locus analysis; the assigned poles have been chosen minimizing the 2norm of eigenvalues. This tuning process results in a combination of the pole placement strategy and of the gain scheduling approach, that means both robust and adaptative. Such analysis has been verified by MATLAB simulations. The numerical results show the strong dependence of the stability of the controlled system on the resistance of the output filter capacitor and on the parameters of controller.
非线性控制下双有源桥式dc-dc变换器的分岔及稳定性分析
双有源桥式dc-dc变换器越来越多地应用于电力电子的各个领域。与其他拓扑结构相比,该转换器具有不同的优点,但在不稳定的区域可能会进入其工作范围,从而限制了其应用。为此,本文建立了被控变换器的精确离散大信号采样数据模型,并对系统进行了稳定性和分岔分析,以确定增大被控系统稳定域的准则。该控制策略是基于雅可比矩阵线性化的离散非线性控制策略。然后利用根轨迹分析实现调节器的动态极点调整;指定的极点被选择最小化特征值的2范数。这种调谐过程导致极点放置策略和增益调度方法的结合,这意味着鲁棒和自适应。通过MATLAB仿真验证了上述分析的正确性。数值结果表明,被控系统的稳定性与输出滤波电容的电阻和控制器参数有很大的关系。
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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