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An Impedance-Based Stability Assessment Methodology for DC Distribution Power System With Multivoltage Levels

机译:多电压等级的直流配电系统基于阻抗的稳定性评估方法

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Impedance-based methods are effective for stability assessment of cascaded systems. However, the dc distribution power system (DPS) is becoming increasingly complex, incorporating multivoltage levels, many dc buses, and numerous converters. Consequently, conventional stability criteria, such as Middlebrook criterion and its extensions, may not have the ability to judge stability very succinctly. Thus, more research work related to stability evaluation of dc DPS with multivoltage levels needs to be carried out. This article proposes an impedance-based stability assessment methodology. First of all, a unified form of the system is obtained regardless of its structures and operating modes, based on classification of any converter as either a bus voltage-controlled converter or a bus current-controlled converter. Then, according to the two-port small-signal model, the equivalent loop gain of the system is derived precisely. It should be noted that intermediate bus converter could adopt output current or output voltage control modes, which will have influence on the equivalent loop gain expression. After that, the stability requirement of the system is given by introducing the Nyquist criterion to the equivalent loop gain. Finally, an experimental prototype is established to validate the effectiveness of the proposed criterion.
机译:基于阻抗的方法对于级联系统的稳定性评估是有效的。但是,直流配电电源系统(DPS)变得越来越复杂,其中包含了多电压电平,许多直流总线和许多转换器。因此,常规的稳定性标准(例如Middlebrook准则及其扩展名)可能无法非常简洁地判断稳定性。因此,需要进行更多有关具有多电压电平的直流DPS稳定性评估的研究工作。本文提出了一种基于阻抗的稳定性评估方法。首先,基于任何转换器的分类,无论系统的结构和运行模式如何,都可以获得系统的统一形式,无论是总线电压控制转换器还是总线电流控制转换器。然后,根据两端口小信号模型,精确推导了系统的等效环路增益。应该注意的是,中间总线转换器可以采用输出电流或输出电压控制模式,这将对等效环路增益表达式产生影响。之后,通过将奈奎斯特准则引入等效环路增益来给出系统的稳定性要求。最后,建立了一个实验原型以验证所提出标准的有效性。

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