A. Simeon, T. Wanjekeche, E. Hamatwi, N. I. Kamati Mbangula
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引用次数: 2
Abstract
The development of Distributed Energy Resources and their integration in the distribution system is on the rise worldwide. This has been necessitated by the need for an environment friendly sustainable growth. However, an increased penetration of distributed generators(DG) into the grid has an impact on the integrity, reliability and stability of the grid. In this paper, the impacts of increased penetration of DG on faults on the grid was analysed. The was carried out by modelling and simulating Namibian grid in DigSILENT Power Factory software. The analysis was done at 0% DG penetration level and at maximum DG penetration level of 71.76% under fault condition. The results showed that DG units has potential to enhance system performance, in addition increased penetration of DG units reduces the magnitude of maximum rotor angle deviation hence enhancing transient stability of the grid.
分布式能源的发展及其在配电系统中的集成在世界范围内呈上升趋势。这是环境友好型可持续增长的需要所必需的。然而,越来越多的分布式发电机(DG)进入电网,对电网的完整性、可靠性和稳定性产生了影响。本文分析了DG渗透增加对电网故障的影响。采用DigSILENT Power Factory软件对纳米比亚电网进行建模和仿真。分析分别在零DG穿透水平和故障条件下最大DG穿透水平为71.76%时进行。结果表明,DG机组具有提高系统性能的潜力,并且DG机组的增加降低了转子最大角偏差的大小,从而提高了电网的暂态稳定性。