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Small-signal modeling of current-mode controlled modular DC-DC converters using the state-space algebraic approach

机译:使用状态空间代数方法电流模式控制模块化DC-DC转换器的小信号建模

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Small-signal models are useful tools to preliminary understand the dynamics of interconnected systems like modular dc-dc converters which find a wide range of industrial applications. This work proposes a state-space-based averaged small-signal model in symbolic form for a peak current-mode controlled parallel-input/parallel-output buck converter operating in the continuous-conduction mode. In modeling the converter power-stage each module is independently represented. For modeling the current-mode control the state-space algebraic approach is used to incorporate the current-mode control-law into the power-stage equations. For each module two parasitic elements in addition to the current-loop sampling action are included in the derivation. Furthermore, the control-to-output voltage transfer functions are presented in symbolic form for two cases of interest: the first when the converter has two non-identical modules to study the effect of inductor mismatch, and the second when the converter is composed of n -connected identical modules to assess the effect of varying the number of modules. All responses from PSIM cycle-by-cycle simulations are in good agreement with the mathematical model predictions up to half the switching frequency.
机译:小信号模型是初步了解互联系统的动态的有用工具,如模块化DC-DC转换器,它找到了各种工业应用。该工作提出了一种以连续导通模式操作的峰值电流模式控制的并联降压转换器以符号形式提出了一种基于状态的平均小信号模型。在模拟转换器电源级,每个模块都独立地表示。为了对电流模式控制进行建模,使用状态空间代数方法将当前模式控制定律纳入电力级方程。对于每个模块,除了当前环路采样动作之外,两个寄生元件包括在推导中。此外,控制到输出电压传递函数以符号形式呈现两个感兴趣的情况:第一时的转换器具有两个非相同模块,以研究电感器不匹配的效果,以及转换器组成时的第二个非相同模块N-Connected相同的模块,以评估改变模块数量的效果。 PSIM周期逐个仿真的所有响应与最多一半的交换频率的数学模型预测吻合良好。

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