忆阻器负载下SEPIC变换器的混沌分析与控制

Zhen Li, Dongqing Wang
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摘要

SEPIC变换器作为一种高阶DC-DC变换器,在某些条件下具有丰富的非线性现象。忆阻器作为一种特殊的非线性器件,在现代研究中得到了广泛的应用。本文构造了一种具有记忆性负载和前置电感电流控制的新型SEPIC电路。首先推导了连续电流模式下两种工作状态的状态方程。利用MATLAB仿真了不同分岔参数下不同平面的电感电流分岔图和相位图。结果表明,带忆阻负载的变换器在周期1时具有更大的工作范围。其次,利用PSIM建立了具有相同参数的电路模型,仿真结果与MATLAB仿真结果一致。最后,针对参数变化引起的系统混沌,引入了斜坡补偿的方法,有效地抑制了混沌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chaos analysis and control of SEPIC converter with the memristor load
The SEPIC converter, as a high order DC-DC converter, has rich nonlinear phenomena under some conditions. Memristor, as a special nonlinear device, is widely used in modern research. In this paper, a new type of SEPIC circuit with memristive load and front inductor current control is constructed. First, the state equations of the two working states in continuous current mode (CCM) are derived. The bifurcation diagram of inductance current and phase diagram of different planes under different bifurcation parameters are simulated by MATLAB. It is found that the converter with memristor load has a wider range of operation at period-1. Secondly, PSIM was used to build a circuit model with the same parameters, and the simulation results were consistent with those obtained by MATLAB. Finally, for system chaos caused by parameter changes, the method of ramp compensation is introduced to effectively suppress the chaos.
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