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Studying cascading overload failures under high penetration of wind generation

机译:研究风力高渗透下的级联过载故障

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While power systems are reliable infrastructures, their complex interconnectivities allow for propagation of disturbances through cascading failures which causes blackouts. Meanwhile the ever increasing penetration level of renewable generation into power grids introduces a massive amount of uncertainty to the grid that might have a severe impact on grid vulnerability to overload cascading failures. There are numerous studies in the literature that focus on modeling cascading failures with different approaches. However, there is a need for studies that simulate cascading failure considering the uncertainty coming from high penetration of renewable generation. In this study, the impacts of wind generation in terms of its penetration and uncertainty levels on grid vulnerability to cascading overload failures are studied. The simulation results on IEEE 300 bus system show that uncertainty coming from wind energy have severe impact on grid vulnerability to cascading overload failures. Results also suggest that higher penetration levels of wind energy if not managed appropriately will add to this severity due to injection of higher uncertainties into the grid.
机译:尽管电力系统是可靠的基础设施,但其复杂的互连性却允许通过级联故障传播干扰,从而导致停电。同时,可再生能源在电网中的渗透水平不断提高,给电网带来了巨大的不确定性,这可能会严重影响电网超载级联故障的脆弱性。文献中有大量研究着重于使用不同方法对级联故障进行建模。但是,需要考虑到可再生发电的高普及率带来的不确定性来模拟级联故障的研究。在这项研究中,研究了风力发电在其渗透性和不确定性方面的影响,对电网遭受级联过载故障的脆弱性的影响。 IEEE 300总线系统的仿真结果表明,来自风能的不确定性严重影响了电网的脆弱性,从而导致级联过载故障。结果还表明,由于对电网注入更高的不确定性,如果不适当管理,较高的风能渗透水平将加剧这种严重性。

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