Nonlinear modeling and analysis of a practical controllable rectifier

Yu Su, Chunsen Tang, Zhi Wang, Yue Sun, A. Hu
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Abstract

The complicated nonlinear behaviors of a triacbased controllable rectifier are investigated in this paper. The triac is modeled as a nonlinear equivalent resistor. Considering the triggering and conducting conditions of the triac and the conducting condition of the rectifier, a piecewise state space model is set up. Based on that, a discrete iteration mapping model is further developed to analyze the transient behavior of the system. The typical characteristics of various period-doubling bifurcation phenomena are described by phase portraits. Using the symbolic sequence analysis method, both the border collision and standard period-doubling bifurcations are identified in the system. It has been found that the border collision bifurcation is caused by the missing conduction of the triac. A set of bifurcation diagrams showing the period doubling bifurcation behaviors of the system with relation to the circuit variables and parameters have been plotted. The results obtained can be used to guide the analysis and design of thyristor type controllable rectifier circuits. The analysis method is useful for investigating nonlinear bifurcation behaviors in similar switch-mode circuits.
实用可控整流器的非线性建模与分析
研究了基于三可控硅的可控整流器的复杂非线性特性。该可控硅被建模为一个非线性等效电阻。考虑可控硅的触发和导通条件和整流器的导通条件,建立了分段状态空间模型。在此基础上,进一步建立了离散迭代映射模型来分析系统的暂态行为。用相图描述了各种倍周期分岔现象的典型特征。采用符号序列分析方法,对系统中的边界碰撞和标准倍周期分岔进行了识别。发现边界碰撞分岔是由于三晶硅的导通缺失引起的。绘制了一组分岔图,显示了系统的倍周期分岔行为与电路变量和参数的关系。所得结果可用于指导晶闸管型可控整流电路的分析和设计。该分析方法可用于研究类似开关电路的非线性分岔行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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