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Robust control for buck voltage converter under resistive and inductive varying load

机译:电阻和电感变化负荷下降压电压转换器的鲁棒控制

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Voltage converter circuits are fundamental components in power electronics applications. However, their paramount role on various appliances due to their well-known benefits comes together with difficulties and restrictions for their modeling and control. A buck converter is naturally subjected to non-linearities, time-dependency, noise, and parameter variations. Altogether, it is difficult to provide a fully-descriptive model so linear approximations are commonly used, delegating those burdens to dependable controllers. Traditional models (and resulting controllers) are derived considering a simple resistance as converter's load. A non-resistive load actually requires the converter's model to be modified, many works have dealt only with resistive loads for sake of simplicity. As this behavior is seldom seen in real applications, this work focuses on a resistive-inductive varying loads. The robust controller design is able to face load variations, so cascaded or hierarchical approaches are avoided, resulting in a low-order single-loop controller. Proposal validation is provided through simulation tests over the actual circuit components' models, incorporated in Simulink's Simscape? library.
机译:电压转换电路是电力电子应用中的基本组件。然而,由于他们的众所周知的利益,他们对各种电器上的至关重要的角色与其建模和控制的困难和限制一起。降压转换器自然受到非线性,时间依赖性,噪声和参数变化。完全,难以提供完全描述的模型,因此常用的线性近似,将这些负担委托给可靠的控制器。考虑到转换器负载的简单电阻,导出传统模型(和产生的控制器)。非电阻负载实际上需要转换器的模型进行修改,许多工程只处理了用于简单的电阻负载。由于这种行为很少在实际应用中看到,这项工作侧重于电阻归解的变化负荷。鲁棒控制器设计能够面对负载变化,因此避免了级联或分层方法,从而导致低阶单环控制器。提案验证是通过在Simulink的Simscape中的实际电路组件的模型进行仿真测试提供的?图书馆。

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