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Modeling closed-loop input and output impedances of DC-DC power converters operating inside dc distribution systems

机译:对在直流配电系统内部运行的DC-DC电源转换器的闭环输入和输出阻抗进行建模

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This paper derives closed-loop input and output impedances of a number of dc-dc power electronic converters when operating in a dc distribution network. The derived impedances can be used for stability analysis and control design for dc distribution networks. In this paper, first the small-signal model of a power converter operating in a dc power system is introduced and the open-loop transfer functions are derived. Next, the closed-loop model of the converter is assembled based on the open-loop model and the type of the control scheme. Then, the closed-loop impedances are derived from the resulting closed-loop model. Finally, the derived impedances are verified using an experimental prototype converter.
机译:本文推导了在直流配电网络中工作时,许多dc-dc电力电子转换器的闭环输入和输出阻抗。导出的阻抗可用于直流配电网络的稳定性分析和控制设计。在本文中,首先介绍了在直流电源系统中运行的功率转换器的小信号模型,并推导了开环传递函数。接下来,基于开环模型和控制方案的类型,组装转换器的闭环模型。然后,从所得的闭环模型中得出闭环阻抗。最后,使用实验原型转换器验证导出的阻抗。

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