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Effect of constant power load models on the stability of isolated Microgrids

机译:恒定功率负载模型对隔离微电网稳定性的影响

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The loads that can be found in microgrids have been changing over the years and the problems they cause have grown in complexity. For example, some of the loads present in this type of networks behave like Constant Power Loads (CPL), among which are the tightly regulated electronic converters, which have a quick response and a low output fluctuation. The problem with this type of load is its negative incremental impedance characteristic, which may cause instabilities in the power network with multiple power electronic converters. This work presents a study about the influence of both a dynamic and a static CPL in an isolated microgrid. To achieve this, the DIgSILENT Power Factory software is used to simulate the Huatacondo microgrid located in northern Chile. The results show that, when the load is modeled as constant power, both the voltage and frequency response to disturbances is worsened with the use of constant-impedance type loads. We conclude that electronic type loads, which have CPL behavior, could bring stability issues in isolated microgrids.
机译:多年来,微电网中发现的负载一直在变化,并且它们引起的问题变得越来越复杂。例如,这种类型的网络中存在的某些负载的行为类似于恒定功率负载(CPL),其中包括严格调节的电子转换器,它们具有快速响应和低输出波动的特点。这种负载的问题在于其负增量阻抗特性,这可能会导致具有多个电力电子转换器的电网不稳定。这项工作提出了关于隔离微电网中动态和静态CPL的影响的研究。为此,使用DIgSILENT Power Factory软件模拟位于智利北部的Huatacondo微电网。结果表明,当将负载建模为恒定功率时,使用恒定阻抗类型的负载会使对干扰的电压和频率响应变差。我们得出的结论是,具有CPL行为的电子类型负载可能会在隔离的微电网中带来稳定性问题。

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