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Study of bifurcations in current-programmed DC/DC boost converters: from quasiperiodicity to period-doubling

机译:电流编程DC / DC升压转换器中的分叉研究:从准周期到周期倍增

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This paper studies the bifurcation paths exhibited by a simple second-order DC/DC boost converter under current-programmed control with and without voltage feedback. Previous work in this area has reported two distinct types of bifurcation paths, namely via regions of quasi-periodic orbits and period-doubling. This paper demonstrates that the two different types of bifurcation paths can, in fact, be viewed as part of another bifurcation in which the quasi-periodic sequence transmutes into the period-doubling sequence, and that such a bifurcation is observed regardless of the presence of the outer voltage feedback loop as long as a suitable set of bifurcation parameters is chosen. The describing iterative map is derived in closed form and is used to develop the main results via a series of computer experiments. The characteristic multipliers are calculated and the first onset of flip-bifurcation is predicted. Computer simulation based on an exact piecewise switched model confirms the predicted bifurcations. The exhibition of quasi-periodic orbits is confirmed by computation of the Lyapunov exponent. Finally, a series of return maps are generated to provide an alternative viewpoint to the reported bifurcations in terms of a transmutation from a tent-like map to a logistic-like map.
机译:本文研究了具有电流反馈控制和无电压反馈的简单二阶DC / DC升压转换器的分叉路径。在该领域的先前工作已经报道了两种不同的分叉路径,即通过准周期轨道区域和周期加倍区域。本文证明,实际上,可以将两种不同类型的分叉路径视为另一种分叉的一部分,在该分叉中,准周期序列变为周期倍增序列,并且无论是否存在分叉,都可以观察到这种分叉。只要选择一组合适的分叉参数,外部电压反馈环路即可。描述性的迭代图以封闭形式导出,并通过一系列计算机实验用于开发主要结果。计算特征乘数,并预测翻转分叉的首次发作。基于精确的分段切换模型的计算机仿真确认了预测的分叉。通过计算李雅普诺夫指数,证实了准周期轨道的显示。最后,生成一系列返回图,以从帐篷式地图转换为逻辑式地图的方式为报告的分歧提供替代观点。

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