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Analysis on the voltage stability and the allowed penetration capacity of distributed generations in Yuhang power grid

机译:余杭电网分布式发电的电压稳定性和允许穿透能力分析。

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The increasing amount of the integration of distributed generations (DG) will bring about some adverse effects on the static and transient voltage stability, or even threaten the reliability and the safety of the whole power grid. The integration capacity of DGs is the main fact that contributes to the impact on the voltage stability. As DGs are connected to the grid through electronic interface, different kinds of control methods affect voltage stability significantly as well. This work mainly focuses on the DG integration to Yuhang power grid, and the outside part of this grid can be equivalent to a Thevenin circuit. The analytic expressions of the voltage and the power penetration rate at the DG connected node are derived. On this basis, the stability characteristics of the load voltage under different DG penetration rates are analyzed. Moreover, the effects of different reactive power control strategies on voltage static stability are compared with each other, and the transient voltage stabilities under different DG penetration rates are also discussed. Finally, the allowed penetration rate for Yuhang power grid is determined after checking the static and transient stability. The results show that the system can support more loads if the penetration of DG is increased appropriately.
机译:分布式发电(DG)集成量的增加将对静态和瞬态电压稳定性产生某些不利影响,甚至威胁到整个电网的可靠性和安全性。 DG的集成能力是影响电压稳定性的主要因素。由于DG通过电子接口连接到电网,因此各种控制方法也会显着影响电压稳定性。这项工作主要集中在与余杭电网的DG集成上,该电网的外部可以等效于戴维南电路。推导了DG连接节点的电压和功率穿透率的解析表达式。在此基础上,分析了不同DG穿透率下负载电压的稳定性。此外,还比较了不同无功功率控制策略对电压静态稳定性的影响,并讨论了不同DG穿透率下的暂态电压稳定性。最后,在检查了静态和暂态稳定性之后,确定了余杭电网的允许穿透率。结果表明,如果适当增加DG的渗透率,则系统可以支持更多负载。

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