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The effects of harmonics resonance on a weak network with DFIG based wind generation

机译:基于DFIG的风力发电对弱电网的谐波和谐振影响

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Large industrial networks connected to weak utility based networks can make use of local generation in order to improve reliability or to make use of excess heat for other purposes (gas turbines, diesel sets etc.). Utilisation of 2nd order damped filters to limit harmonics are common place when large power electronic based drives are used. Given the need to make use of some degree of renewable energy systems is has become necessary to obtain an understanding of how the network stability will be affected when such technologies are considered. The application of a DFIG based wind generation system interconnected to a weak industrial network that makes use of 2nd order damped filters is investigated in order to determine how and if resonance can take place. The results of such a review have shown that with a changing network (SCC, voltage connection and load) the addition of wind generation can assist in limiting potential resonance impedance issues and offer higher stability to the distribution system. This can be particularly effective with weak networks that experience significant changes to SCC at the point of common coupling with minor network changes as has been the case with this review.
机译:连接到基于公用事业的薄弱网络的大型工业网络可以利用本地发电来提高可靠性或将多余的热量用于其他目的(燃气轮机,柴油机等)。当使用大功率电子驱动器时,通常使用二阶阻尼滤波器来限制谐波。考虑到需要使用某种程度的可再生能源系统,有必要了解在考虑使用此类技术时将如何影响网络稳定性。为了确定如何以及是否会发生共振,研究了基于DFIG的风力发电系统的应用,该系统互连到利用二阶阻尼滤波器的弱工业网络。审查的结果表明,随着网络(SCC,电压连接和负载)的变化,增加的风力发电可以帮助限制潜在的谐振阻抗问题,并为配电系统提供更高的稳定性。这对于弱网络尤其有效,因为弱网络在普通耦合的点上经历了SCC的显着变化,而本次审查就是这种情况。

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