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Dynamical effects of composite output capacitors on current-mode controlled buck converter with constant current load

机译:复合输出电容器对恒流负载下电流模式控制的降压转换器的动态影响

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摘要

The discrete mapping model of current-mode controlled buck converter with constant current load, taking account of composite output capacitors (parallel connection of two different types of capacitor branches, i.e. electrolytic capacitors and ceramic capacitors), is established. Based on the model, dynamical effects of varying output capacitance and equivalent series resistance (ESR) are investigated by bifurcation behaviours. The period of low-frequency oscillation among coexisting fast-slow scale instability is derived by exploring the loci of eigenvalues, while the operating regions are estimated. Time-domain simulation and experimental waveforms are provided for verification of the theoretical analysis, indicating the existences of subharmonic oscillation and coexisting fast-slow scale instability in the converter with variation of output capacitance and ESR. Research results reveal that the low-frequency oscillation can be eventually eliminated due to a relatively large (or small) ESR and the capacitance in the same branch presents to identical tendency of dynamical effects on the converter. Moreover, the interaction effects between two parallel capacitor branches are demonstrated. It illustrates that the low-frequency oscillation can be removed with smaller (or larger) ESR or capacitance in one branch of the composite output capacitors while larger (or smaller) ESR or capacitance in the other branch.
机译:建立了具有恒定电流负载的电流模式控制降压转换器的离散映射模型,该模型考虑了复合输出电容器(两种不同类型的电容器分支(即电解电容器和陶瓷电容器)的并联连接)。基于该模型,通过分叉行为研究了变化的输出电容和等效串联电阻(ESR)的动力效应。通过探索特征值的轨迹,可以推导出共存的快慢尺度不稳定性中的低频振荡周期,同时估算出工作区域。提供了时域仿真和实验波形,以验证理论分析,表明在输出电容和ESR变化的情况下,转换器中存在次谐波振荡和快速慢速尺度不稳定性。研究结果表明,由于具有相对较大(或较小)的ESR,最终可以消除低频振荡,并且同一分支中的电容对转换器产生动态影响的趋势相同。此外,还展示了两个并联电容器分支之间的相互作用。它说明,可以在复合输出电容器的一个分支中使用较小(或更大)的ESR或电容消除低频振荡,而在另一分支中使用较大(或较小)的ESR或电容消除低频振荡。

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