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Dynamics of PFC power converters subject to time-delayed feedback control

机译:受到延时反馈控制的PFC电源转换器的动力学

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Power factor correction converters are power electronics circuits used as AC-DC power supplies. These systems are well known to exhibit nonlinear phenomena such as subharmonic oscillations and chaotic regimes. These undesirable behaviors increase the THD and therefore can jeopardize enormously the system performances. In this paper, time delay feedback control is applied to stabilize a two-stage power factor correction AC-DC converter when it exhibits these instabilities under traditional controllers. This control technique introduces many advantages to the most and widely used average current mode control through widening the stability domain of the system. By appropriately selecting the time delay feedback gain and the time delay period, the undesirable subharmonic components are eliminated, whereas the desired ones remain unchanged. A harmonic balance approach is used for studying the dynamics of the system under the new control scheme and to obtain the stabilization domain.
机译:功率因数校正转换器是用作AC-DC电源的功率电子电路。众所周知,这些系统会表现出非线性现象,例如次谐波振荡和混沌状态。这些不良行为会增加THD,因此会极大危害系统性能。本文采用时滞反馈控制来稳定两级功率因数校正AC-DC转换器,使其在传统控制器下表现出这些不稳定性。通过扩展系统的稳定性,该控制技术为最广泛使用的平均电流模式控制带来了许多优势。通过适当地选择时间延迟反馈增益和时间延迟周期,消除了不良的次谐波分量,而所需的次谐波分量保持不变。谐波平衡方法用于研究在新控制方案下的系统动力学并获得稳定域。

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