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Modeling and Stablility Analysis of Peak-Current-Mode-Controlled SIDO CCM Buck Converter

机译:峰值电流模式控制SIDE CCM Buck转换器的建模和稳定性分析

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Dynamic phenomenon is a key factor limiting stability performance for peak-current-mode-controlled (PCM-controlled) single-inductor dual-output (SIDO) Buck converter. The paper published before has established 1-D approximate discrete iterative model for PCM-controlled SIDO DC-DC converter, which has investigated dynamic phenomenon and stability with variation of main circuit parameters. However, the model is not adjust to investigate dynamic phenomenon and stability with variation of load parameter and control parameters. In this paper, the 5-D accurate discrete iterative map model of PCM controlled SIDO Buck converter in continue conduction mode (CCM) is established. Based on this, the dynamic analysis is emphatically studied by bifurcation diagram. Then, the effects of control parameter on the stable range of load parameters are obtained. Finally, experimental results are carried out to verify theoretical analysis results.
机译:动态现象是限制峰值电流模式控制(PCM控制)单电感双输出(SIDO)Buck转换器稳定性能的关键因素。之前发表的论文为PCM控制的SIDO DC-DC转换器建立了一维近似离散迭代模型,研究了动态现象和稳定性随主电路参数的变化而变化的情况。但是,该模型无法调整以研究动态现象和稳定性,且负载参数和控制参数均会发生变化。本文建立了连续导通模式(CCM)下PCM控制的SIDO Buck变换器的5维精确离散迭代映射模型。在此基础上,通过分叉图着重研究了动力学分析。然后,获得了控制参数对负荷参数稳定范围的影响。最后,通过实验结果验证了理论分析结果。

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