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New framework for parallel interconnection of buck converters: Application to optimal current-sharing with constraints and unknown load

机译:降压转换器并联互连的新框架:应用于具有约束和未知负载的最​​佳均流

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摘要

In this paper, heterogeneous set of parallel buck converters, feeding an unknown resistive load via a common DC bus, is considered. When addressing control design problem of this interconnected power converter, one has to accommodate competing objectives of (i) voltage regulation and (ii) power distribution among branches, also called current-sharing in this context. Related dynamics being coupled, classical solution resorts to frequency separation to prevent undesirable interaction between them. In stark contrast with this approach, this paper proposes a novel framework which completely separate voltage regulation from current distribution dynamics without frequency separation, hence offering tractability without sacrificing performance. Such a reformulation is performed on the open-loop model so that control law candidates are not confined in some particular class. Arbitrary large set of heterogeneous converters can be handled. Remarkably, voltage regulation boils down to the control of a single virtual buck converter. Controller design example exploiting the new structure is provided. In the context of unknown resistive load, this controller achieves voltage regulation and minimizes overall power losses at the steady-state while taking current limits of each branch into account. Those results are supported by formal statements and proofs, and assessed through experimental results.
机译:在本文中,考虑了一组异类的并行降压转换器,它们通过公共DC总线为未知的电阻负载供电。在解决这种互连功率转换器的控制设计问题时,必须适应以下竞争目标:(i)电压调节和(ii)分支之间的功率分配,在此情况下也称为电流共享。相关的动力学耦合在一起,经典的解决方案诉诸于频率分离,以防止它们之间的不良相互作用。与这种方法形成鲜明对比的是,本文提出了一种新颖的框架,该框架将电压调节与电流分配动力学完全分开,而无需进行频率分离,从而在不牺牲性能的情况下提供了可牵引性。在开环模型上执行这样的重新构造,以使控制律候选项不受限于特定类别。可以处理任意大量的异构转换器。值得注意的是,电压调节归结为单个虚拟降压转换器的控制。提供了利用新结构的控制器设计示例。在未知电阻负载的情况下,该控制器可实现电压调节并将稳态下的总功率损耗降至最低,同时考虑每个分支的电流限制。这些结果得到正式声明和证明的支持,并通过实验结果进行评估。

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