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Tuning of passivity-preserving controllers for switched-mode power converters

机译:开关模式功率转换器的无源保持控制器的调整

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摘要

Nonlinear passivity-based control (PBC) algorithms for power converters have proved to be an interesting alternative to other, mostly linear, control techniques. The control objective is usually achieved through an energy reshaping process and by injecting damping to modify the dissipation structure of the system. However, a key question that arises during the implementation of the controller is how to tune the various control parameters. From a circuit theoretic perspective, a PBC forces the closed-loop dynamics to behave as if there are artificial resistors-the control parameters-connected in series or in parallel to the real circuit elements. In this paper, a solution to the tuning problem is proposed that uses the classical Brayton-Moser equations. The method is based on the study of a certain "mixed-potential function" which results in quantitative restrictions on the control parameters. These restrictions seem to be practically relevant in terms stability, overshoot and nonoscillatory responses. The theory is exemplified using the elementary single-switch buck and boost converters.
机译:事实证明,用于功率转换器的基于非线性无源控制(PBC)的算法是替代其他主要是线性控制技术的有趣替代方法。通常通过能量整形过程和注入阻尼来修改系统的耗散结构来实现控制目标。但是,在控制器的实现过程中出现的一个关键问题是如何调整各种控制参数。从电路理论的角度来看,PBC迫使闭环动力学表现得好像有人造电阻​​器(控制参数)串联或并联连接到实际电路元件。在本文中,提出了使用经典的Brayton-Moser方程来解决调谐问题的方法。该方法基于对某种“混合势函数”的研究,这导致了对控制参数的定量限制。这些限制在稳定性,超调和非振荡响应方面似乎与实际相关。该理论使用基本的单开关降压和升压转换器进行了举例说明。

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