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Complex dynamics and fast-slow scale instability in current-mode controlled buck converter with constant current load

机译:具有恒定电流负载的电流模式控制降压转换器的复杂动力学和快速慢速比例不稳定

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摘要

The complex dynamics and coexisting fast-slow scale instability in current-mode controlled buck converter with constant current load (CCL), operating in both continuous conduction mode (CCM) and discontinuous conduction mode (DCM), are investigated in this paper. Via cycle-by-cycle computer simulation and experimental measurement of current-mode controlled buck converter with CCL, it is found that a unique fast-slow scale instability exists in the second-order switching converter. It is also found that a unique period-doubling accompanied by Neimark-Sacker bifurcation exists in this simple second-order converter, which is different from period-doubling or Neimark-Sacker bifurcations reported previously. Based on a nonlinear discrete-time model and the corresponding Jacobian, the effects of CCL and input voltage on the dynamics of current-mode controlled buck converter are investigated and verified theoretically. Fixed point analysis for slow-scale low-frequency oscillation is also given to verify the dynamics and the coexisting fast-slow scale instability.
机译:本文研究了在恒定电流负载(CCL)下工作于连续导通模式(CCM)和不连续导通模式(DCM)的电流模式控制降压转换器的复杂动力学特性和同时存在的快慢尺度不稳定性。通过逐周期计算机仿真和带CCL的电流模式控制降压转换器的实验测量,发现在二阶开关转换器中存在独特的快速慢级不稳定性。还发现,在这种简单的二阶转换器中存在伴随Neimark-Sacker分叉的唯一周期倍增,这不同于先前报道的周期倍增或Neimark-Sacker分叉。基于非线性离散时间模型和相应的雅可比行列式,研究并验证了CCL和输入电压对电流模式控制降压转换器动力学的影响。还给出了慢速低频振荡的不动点分析,以验证动力学和快速慢速低频并存的不稳定性。

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