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Preliminary investigation on effect of PV generation on oscillation modes of power system

机译:光伏发电对电力系统振荡模式影响的初步研究

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Capacity of grid connected photovoltaic (PV) power has increased significantly over the recent years in China, a significant number of large-scale PV plants have been put into operation, such as Golmud (300MW) and Long-yang Gorge (320MW) in Qinghai province. These PV plants are always geographically far from load centers and connected to relatively weak transmission networks. Whether these large PV plants will have an impact on the oscillation modes of power system? If yes, what is the impact? They are all still open questions and worthy of further investigation. In this paper, firstly, typical structures of PV plant integration system are designed, including chain and ring structures. Secondly, based on the typical structures, two influencing factors, namely PV penetration level and electrical distance of PV plant from power system, are chosen to investigate the impact of PV plant on power system oscillation modes. The analysis results based on DIgSILENT PowerFactory software have been listed and compared under the two system topology structures.
机译:近年来,中国的并网光伏发电容量显着增加,青海省的格尔木(300MW)和龙阳峡(320MW)等大量大型光伏电站已经投入运营。省。这些光伏电站在地理位置上始终远离负荷中心,并连接到相对较弱的输电网络。这些大型光伏电站是否会对电力系统的振荡模式产生影响?如果是,会产生什么影响?它们仍然是尚待解决的问题,值得进一步调查。本文首先设计了光伏电站集成系统的典型结构,包括链环结构。其次,根据典型结构,选择了两个影响因素,即光伏渗透深度和光伏电站与电力系统的电气距离,以研究光伏电站对电力系统振荡模式的影响。在两种系统拓扑结构下,列出并比较了基于DIgSILENT PowerFactory软件的分析结果。

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