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Distributed Energy Resources Integration Challenges in Low-Voltage Networks: Voltage Control Limitations and Risk of Cascading

机译:低压网络中的分布式能源整合挑战:电压控制限制和级联风险

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摘要

The integration of distributed energy resources (DER) in low-voltage networks is expected to increase significantly in the next few years. It is known that the large-scale integration of DER in conventional low-voltage (LV) networks poses many challenges such as voltage rise. To mitigate voltage rise caused by DER, utilities are defining simple voltage regulation strategies such as disconnecting DER when phase voltages rise above a defined threshold. In this paper, we model LV networks as three-phase unbalanced circuits and illustrate that such local regulation strategies may cause the cascading of the DER in a feeder. We then propose an optimal control approach to avoid cascading and optimize DER availability. Local control approaches are discussed in the context of global DER availability and their limitations are illustrated.
机译:预计在未来几年中,低压网络中分布式能源(DER)的集成将大大增加。众所周知,DER在常规低压(LV)网络中的大规模集成带来了许多挑战,例如电压上升。为了减轻由DER引起的电压升高,公用事业公司正在定义简单的电压调节策略,例如当相电压升高到定义的阈值以上时断开DER。在本文中,我们将低压网络建模为三相不平衡电路,并说明这种局部调节策略可能会导致馈线中DER的级联。然后,我们提出了一种最佳控制方法,以避免级联并优化DER可用性。在全局DER可用性的背景下讨论了本地控制方法,并说明了其局限性。

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