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Dynamics and stabilization of peak current-mode controlled buck converter with constant current load

机译:恒定电流负载下峰值电流模式控制的降压转换器的动力学和稳定性

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摘要

The discrete iterative map model of peak current-mode controlled buck converter with constant current load (CCL), containing the output voltage feedback and ramp compensation, is established in this paper. Based on this model the com-plex dynamics of this converter is investigated by analyzing bifurcation diagrams and the Lyapunov exponent spectrum. The effects of ramp compensation and output voltage feedback on the stability of the converter are investigated. Experimental results verify the simulation and theoretical analysis. The stability boundary and chaos boundary are obtained under the theoretical conditions of period-doubling bifurcation and border collision. It is found that there are four operation regions in the peak current-mode controlled buck converter with CCL due to period-doubling bifurcation and border-collision bifur-cation. Research results indicate that ramp compensation can extend the stable operation range and transfer the operating mode, and output voltage feedback can eventually eliminate the coexisting fast-slow scale instability.
机译:本文建立了具有恒流负载(CCL)的峰值电流模式控制降压转换器的离散迭代映射模型,该模型包含输出电压反馈和斜坡补偿。在此模型的基础上,通过分析分叉图和李雅普诺夫指数谱,研究了该转换器的复杂动力学。研究了斜坡补偿和输出电压反馈对转换器稳定性的影响。实验结果验证了仿真和理论分析。在倍增分岔和边界碰撞的理论条件下获得了稳定边界和混沌边界。发现由于周期倍增分叉和边界碰撞分叉,具有CCL的峰值电流模式控制降压转换器中存在四个工作区域。研究结果表明,斜坡补偿可以扩展稳定的工作范围并转换工作模式,而输出电压反馈最终可以消除并存的快慢尺度不稳定性。

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