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Dynamic grid support in low voltage grids — fault ride-through and reactive power/voltage support during grid disturbances

机译:低压电网中的动态电网支持-电网干扰期间的故障穿越和无功功率/电压支持

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Faults in medium and high voltage grids lead to voltage sags in the low voltage level. Due to the voltage dip, distributed generators disconnect from the low voltage grid. Depending on the amount of disconnected generation, system stability could be compromised. With a dynamic grid support, distributed generators remain connected to the grid during faults, also called fault ride-through. Moreover, the feed in of reactive power supports the voltage during the fault. According to the present state of the art, no requirements exist for a dynamic grid support in low voltage grids. However, with a high penetration of distributed generation these requirements might change in the future. This paper investigates the dynamic grid support in low voltage grids. The impact of a dynamic grid support on a distribution grid is studied with IEEE/CIGRE benchmark models for low and medium voltage grids. Models of inverters, directly-coupled synchronous and induction generators are implemented. Furthermore, a present and a future protection system with fault ride-through capability are added to the grid models. The inverters are equipped with a reactive current controller to give a voltage support during faults. To determine the effect of a dynamic grid support, faults in high and medium voltage grids with and without dynamic grid support are simulated and evaluated. The results have shown that the effect of the voltage boost through dynamic grid support in order to recover the voltage is marginal. However, with a high penetration level of distributed generators the voltage boost increases and the impact of faults can be further limited. This investigation has demonstrated the potential of dynamic grid support in low voltage grids to avoid the loss of a large amount of power and to improve the voltage recovery.
机译:中高压电网的故障会导致低电压等级的电压骤降。由于电压骤降,分布式发电机与低压电网断开连接。根据断开的发电量,系统稳定性可能会受到影响。借助动态电网支持,分布式发电机在故障(也称为故障穿越)期间仍保持与电网的连接。此外,无功功率的输入在故障期间支持电压。根据当前技术水平,对于低压电网中的动态电网支撑不存在要求。但是,随着分布式发电的高度普及,这些要求将来可能会发生变化。本文研究了低压电网中的动态电网支持。使用针对中低压电网的IEEE / CIGRE基准模型研究了动态电网支持对配电网的影响。实现了逆变器,直接耦合的同步发电机和感应发电机的模型。此外,将具有故障穿越能力的当前和将来的保护系统添加到网格模型中。逆变器配有无功电流控制器,可在故障期间提供电压支持。为了确定动态电网支持的效果,模拟和评估了具有和不具有动态电网支持的高压和中压电网中的故障。结果表明,通过动态电网支持进行升压以恢复电压的影响很小。但是,随着分布式发电机的高渗透水平,电压升压增加,并且故障的影响可以进一步受到限制。这项研究已经证明了在低压电网中动态电网支持的潜力,可以避免大量电能的损失并提高电压恢复能力。

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