基于连续时间模型的DC-DC变换器Hopf分岔分析

A. Kavitha, G. Uma
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引用次数: 1

摘要

据报道,DC-DC变换器在某些条件下表现出大范围的分岔和混沌。本文利用连续时间模型分析了工作在连续导通模式下的电流控制罗拓扑的分岔问题。通过研究系统的复特征值轨迹和特征乘子对Hopf分岔起始点的定位来分析系统的稳定性。1周期轨道通过Hopf分岔失去稳定性,得到的吸引子是拟周期轨道。这后来通过边界碰撞分岔而分化为混乱。利用MATLAB SIMULINK进行了计算机仿真,验证了预测的分岔。实验结果还表明,系统稳定裕度随负荷的减小而减小。
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Analysis of Hopf Bifurcation in DC-DC Luo Converter using Continuous Time Model
DC-DC converters have been reported as exhibiting a wide range of bifurcations and chaos under certain conditions. This paper analyses the bifurcations in current controlled Luo topology operating in the continuous conduction mode by means of a continuous time model. The stability of the system is analyzed by studying the locus of the complex eigen values and the characteristic multipliers locate the onset of Hopf bifurcation. The 1-periodic orbit loses its stability via Hopf bifurcation and the resulting attractor is a quasi-periodic orbit. This later bifurcates to chaos via border collision bifurcation. A computer simulation using MATLAB SIMULINK confirms the predicted bifurcations. It has also been inferred from the experimental results that the margin of system stability decreases as the load decreases.
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