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首页> 外文期刊>SAIEE Africa Research Journal >Stochastic Assessment of the Impact of Distributed Synchronous Generators on Voltage Sags due to System-Wide Faults
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Stochastic Assessment of the Impact of Distributed Synchronous Generators on Voltage Sags due to System-Wide Faults

机译:随机评估分布式同步发电机对电压凹陷的影响,由于系统宽断层

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摘要

In this paper, the authors use a stochastic approach to investigate the impact of distributed synchronous generation (DSG) on the severity of voltage sags due to system-wide occurring faults. Based on the method of fault positions, faults of various types are applied at pre-determined locations along all lines in the system and remaining voltages on the faulted phase at a monitoring point are recorded. This is done for a base case and a case with DSG. The results show with DSG, there is a general improvement in magnitudes of remaining voltage. Comparison of the populations of voltages for the two cases, using The Wilcoxon Signed Rank Sum Test, showed that these improvement are statistically significant. Further analysis showed that DSG either reduces severity of or eliminates some voltage sags. In addition, the number of expected trips due voltage sags is reduced with DSG, for any voltage sensitivity level assumed. The study concluded that incorporation of distributed synchronous generation is beneficial to the improvement of voltage sags and this should be a further incentive for their integration, especially into weak networks.
机译:在本文中,作者使用了随机方法来研究分布式同步产生(DSG)对由于系统宽的发生故障导致电压凹凸严重性的影响。基于故障位置的方法,各种类型的故障沿系统中的所有线路施加在预定位置,并记录在监测点处的故障阶段上的剩余电压。这是针对基本情况完成的,并且具有DSG的情况。结果显示DSG,剩余电压的大小有一般性提高。使用Wilcoxon签名等级测试的两种情况的电压群的比较显示,这些改善是统计学意义的。进一步的分析表明,DSG可减少或消除一些电压凸起的严重性。另外,对于任何用于假设的任何电压灵敏度水平,预期跳闸的次数的数量减小了DSG。该研究得出结论,分布式同步产生的融合有利于电压凹陷的提高,这应该是它们的集成,尤其是进入弱网络的进一步激励。

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