首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >A REPRESENTATIVE DISCRETE-TIME MODEL FOR UNCOVERING SLOW AND FAST SCALE INSTABILITIES IN BOOST POWER FACTOR CORRECTION AC-DC PRE-REGULATORS
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A REPRESENTATIVE DISCRETE-TIME MODEL FOR UNCOVERING SLOW AND FAST SCALE INSTABILITIES IN BOOST POWER FACTOR CORRECTION AC-DC PRE-REGULATORS

机译:补偿功率因数校正AC-DC预调节器的慢速和快速比例不稳定性的代表离散时间模型

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摘要

Boost Power Factor Correction (PFC) AC-DC converter under fixed frequency average current control is a nonlinear and nonautonomous dynamical system characterized by two different forcing periods and thus by two different scales of time. Four different kinds of standard instability phenomena are possible for this system, depending on the parameters of the circuit. A combination of more than one instability phenomenon can also take place. In this paper, we carry out a careful and an accurate modeling of the system. First, we put into evidence most of the nonlinear behaviors that could occur in the system by using the switched circuit-based model and then we derive a unified representative discrete-time model that is able to predict accurately all these behaviors.
机译:固定频率平均电流控制下的升压功率因数校正(PFC)AC-DC转换器是一种非线性且非自治的动态系统,其特征在于两个不同的强制周期,因此具有两个不同的时间标度。根据电路的参数,此系统可能有四种不同类型的标准不稳定性现象。也可能发生不止一种不稳定现象的组合。在本文中,我们对系统进行了仔细而准确的建模。首先,通过使用基于开关电路的模型,我们证明了系统中可能发生的大多数非线性行为,然后得出了能够精确预测所有这些行为的统一的代表性离散时间模型。

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