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Analysis and control of chaotic behavior in boost converter by ramp compensation based on Lyapunov exponents assignment: theoretical and experimental investigation

机译:基于Lyapunov指数分配的升压变换器斜坡补偿混沌行为的分析与控制:理论与实验研究。

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Nonlinear analysis of complex dynamics displayed by current mode dc-dc converter and idea of Lyapunov exponents assignment by ramp compensator in order to control chaotic behavior is proposed in this article. A discrete-time iterative nonlinear mapping model is derived. The occurrence of the complex behaviors of bifurcation and chaos generated by varying the circuit parameters are investigated through numerical analysis and software implementation of the circuit. Next, in order to control bifurcation and chaos in these converters, the ramp compensation method is used By inserting the ramp compensation parameter in the dynamical equations of the system, these complex behaviors are examined theoretically and numerically as well. It is proved that through this method, the stable period-one operation of the converter can be extended. By evaluating the Lyapunov exponents (LEs) of the system, the impact of the slope on the location of LEs are determined analytically. This leads to a design methodology for control of chaos in this converter based on LEs assignment in desired values by proper selection of compensator slope. By developing an experimental set tip, practical results are obtained to confirm the theoretical analysis and simulations. (C) 2015 Elsevier Ltd. All rights reserved
机译:本文提出了电流模式dc-dc转换器显示的复杂动力学的非线性分析和斜率补偿器为控制混沌行为而设计的Lyapunov指数的思想。推导了离散时间迭代非线性映射模型。通过数值分析和电路软件实现,研究了由于改变电路参数而产生的分叉和混沌的复杂行为。接下来,为了控制这些转换器的分叉和混沌,使用了斜坡补偿方法。通过将斜坡补偿参数插入系统的动力学方程中,从理论上和数值上也研究了这些复杂的行为。事实证明,通过这种方法,可以延长转换器的稳定周期一运行。通过评估系统的Lyapunov指数(LE),可以分析确定坡度对LE位置的影响。这导致了一种设计方法,用于通过适当选择补偿器斜率,根据所需值中的LE分配,控制此转换器中的混沌。通过开发实验装置技巧,可以获得实际结果,以确认理论分析和模拟。 (C)2015 Elsevier Ltd.保留所有权利

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