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The Voltage Regulation Control Strategy with Distributed Photovoltaic Participation under Serious Failure Based on Transient Voltage Margin

机译:基于瞬态电压余量的严重故障下分布式光伏参与的电压调节控制策略

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With the poor ability of distributed PV to withstand voltage fluctuation, the voltage fluctuation caused by DC blocking can lead to large-scale disorderly de-networking of distributed PV, especially those distributed PV which close to voltage weak buses. which means that more and more attentions are paid to the transient voltage stability (TVS). If distributed PV can participation in reactive compensation, we don’t need to add additional reactive power compensator, voltage stability of voltage weak buses will be increased, which can reduce PV off-grid. Therefore, for the HVDC receiving end system under distributed PV intensive access, first of all, we need to find the voltage weak bus, then increase the reactive power output of distributed PV near the voltage weak buses to increase transient voltage margin. Taking the simplified model of power system in Anhui Province as an example, the validity of the strategy is verified, and the results show that the transient voltage stability of the system has been improved.
机译:随着分布式PV能力耐电压波动的差,直流阻挡引起的电压波动可能导致分布式PV的大规模无序除网络,特别是那些靠近电压弱总线的分布式PV。这意味着越来越多的注意力被支付给瞬态电压稳定性(TV)。如果分布式PV可以参与无功补偿,我们不需要添加额外的无功补偿器,电压弱总线的电压稳定性将增加,这可以减少PV离网。因此,对于在分布式PV密集型访问下的HVDC接收端系统,首先,我们需要找到电压弱总线,然后增加电压弱总线附近的分布式PV的无功功率输出,以提高瞬态电压裕度。以安徽省电力系统的简化模型为例,验证了策略的有效性,结果表明系统的瞬态电压稳定性得到了改进。

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