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Effect of doubly fed induction generatortidal current turbines on stability of a distribution grid under unbalanced voltage conditions

机译:双馈感应发电机潮流涡轮机在不平衡电压条件下对配电网稳定性的影响

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摘要

This paper analyses the effects of doubly fed induction generator (DFIG) tidal current turbines on a distribution grid under unbalanced voltage conditions of the grid. A dynamic model of an electrical power system under the unbalanced network is described in the paper, aiming to compare the system performance when connected with and without DFIG at the same location in a distribution grid. Extensive simulations of investigating the effect of DFIG tidal current turbine on stability of the distribution grid are performed, taking into account factors such as the power rating, the connection distance of the turbine and the grid voltage dip. The dynamic responses of the distribution system are examined, especially its ability to ride through fault events under unbalanced grid voltage conditions. The research has shown that DFIG tidal current turbines can provide a good damping performance and that modern DFIG tidal current power plants, equipped with power electronics and low-voltage ride-through capability, can stay connected to weak electrical grids even under the unbalanced voltage conditions, whilst not reducing system stability.
机译:本文分析了在电网电压不平衡的情况下,双馈感应式潮流发电机对配电网的影响。本文描述了不平衡网络下的电力系统的动态模型,旨在比较在配电网中同一位置使用DFIG和不使用DFIG的情况下的系统性能。考虑到诸如功率额定值,涡轮机的连接距离和电网电压骤降等因素,进行了广泛的模拟,以研究DFIG潮流涡轮机对配电网稳定性的影响。检查配电系统的动态响应,特别是在不平衡的电网电压条件下克服故障事件的能力。研究表明,DFIG潮流涡轮机可提供良好的阻尼性能,并且配备有电力电子设备和低压穿越能力的现代DFIG潮流发电厂即使在电压不平衡的情况下也可以保持与弱电网的连接,而不会降低系统稳定性。

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