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Effect of inverter-based DG penetration and control in hybrid microgrid dynamics and stability

机译:基于逆变器的DG渗透和控制对混合微电网动力学和稳定性的影响

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This paper presents a study on the effect of increasing the inverter-based Distributed Generators (DGs) penetration in the dynamics and stability of a hybrid Microgrid. An analysis is also done to compare different inverter control techniques as a way to reduce voltage and frequency variations after a disturbance. The purpose of this study is to compare Microgrids with different percentage of inverter penetration and propose methods to enhance stability. Results show that increasing penetration of inverters operated in slave mode, reduces stability. This is observed as oscillations and large settling times for voltage and frequency after disturbances such as islanding with power unbalance and fault-triggered islanding. Results also show that using droops in the inverter control loop can limit oscillations and reduce recovery times even beyond that of a system with large percentage of power generated with a synchronous machine. Finally, it is shown that if the inverter is operated so that its power factor matches that of the local loads, then stability increases.
机译:本文提出了一种研究,以提高基于逆变器的分布式发电机(DGs)的渗透对混合微电网的动力学和稳定性的影响。还进行了分析以比较不同的逆变器控制技术,以减少干扰后的电压和频率变化。这项研究的目的是比较具有不同百分比的逆变器穿透力的微电网,并提出提高稳定性的方法。结果表明,增加以从机模式运行的逆变器的普及度会降低稳定性。观察到这是在出现干扰(例如具有功率不平衡的孤岛和故障触发的孤岛)后电压和频率的振荡和较大的建立时间。结果还表明,在逆变器控制环路中使用下垂可以限制振荡,并减少恢复时间,甚至超出了同步电机所产生的大量功率的系统的恢复时间。最后表明,如果逆变器运行,使其功率因数与本地负载的功率因数匹配,则稳定性会提高。

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