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Analysis of ferroresonance effects in distribution networks with distributed source units

机译:具有分布式源单元的配电网中铁磁谐振效应的分析

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The connection of Distributed Generation (DG) units to existing networks may give rise to harmful effects on the network and the DG units itself. Therefore, due to increasing penetration of DG units, it is important to consider these effects in order to avoid some of harmful events. Ferroresonance is one of these destructive phenomena. Over voltages due to this phenomena can damage devices which are connected to the network. In DG systems, due to the use of capacitor banks which are used for VAR compensation, grid connection filters, etc. ferroresonance may appear. Also, special operations like islanding, may lead these systems to ferroresonance. In traditional systems ferroresonance normally appear after there is an unbalance in the system. Nevertheless, for networks with significant penetration of DG units, the situation that gives rise to ferroresonance may be different from traditional systems and they can happen without any unbalancing occurrence. In this paper a distribution system integrating wind (WT) and photovoltaic (PV) power systems has been evaluated in order to analyze the performance of ferroresonance in such systems. Finally, the most appropriate techniques to prevent its appearance, and the associated over voltages, have been studied and implemented using PSCAD/EMTDC.
机译:分布式发电(DG)单元与现有网络的连接可能会对网络和DG单元本身产生有害影响。因此,由于DG装置的渗透性增加,因此必须考虑这些影响,以避免某些有害事件的发生,这一点很重要。铁定是这些破坏性现象之一。由于这种现象而导致的过电压会损坏连接到网络的设备。在DG系统中,由于使用了用于VAR补偿的电容器组,电网连接滤波器等,可能会出现铁磁谐振。同样,诸如孤岛之类的特殊操作也可能导致这些系统陷入铁轨。在传统系统中,通常在系统不平衡之后才会出现铁磁谐振。但是,对于具有大量DG部门渗透力的网络,引起铁磁干扰的情况可能与传统系统有所不同,并且可以在不发生任何不平衡现象的情况下发生。在本文中,已经对集成了风力发电和光伏发电系统的配电系统进行了评估,以分析此类系统中的铁磁谐振性能。最后,已经使用PSCAD / EMTDC研究并实现了防止其出现的最合适技术以及相关的过电压。

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