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Enhancing the voltage stability of distribution network during PV ramping conditions with variable speed drive loads

机译:在具有变速驱动载荷的PV斜坡条件下提高分配网络的电压稳定性

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摘要

The Photovoltaic (PV) sources have become the most popular renewable energy resources as it is modular and are deployed quickly. However, the distributed PVs are highly volatile and can have high ramping characteristics where the ramping can go up to 90% of its capacity in about 20 s due to events such as the passing of fast-moving clouds. This kind of PV ramps with high magnitudes can lead to voltage instability in distribution networks that are usually dominated by Induction motor (IM) loads. This paper explains the mechanism of such an instability analytically using Q-V analysis with distribution feeder and IM load characteristics. Highlighting the gradual replacement of IM loads by Variable Speed Drive (VSD) loads due to energy efficiency policies, the paper demonstrates the enhanced voltage stability under VSD loads by both time simulation and analytical approach. Furthermore, the analysis is extended to a realistic distribution network namely, United Kingdom General Distribution System (UKGDS) and extensive case studies are conducted to analyze the voltage stability during PV ramping events at various load compositions of IMs and VSDs. Moreover, the minimum VSD penetration level required to avert the voltage instability at various PV penetration levels have also been determined.
机译:光伏(PV)源已成为最流行的可再生能源资源,因为它是模块化的,并且快速部署。然而,分布式PVS具有高度挥发性,并且由于快速云的传递等事件,斜坡可以在大约20秒内高达其容量的高达90%的高斜坡特性。具有高幅度的这种PV斜坡可导致通常由感应电动机(IM)负载主导的分配网络中的电压不稳定。本文用分配馈线和IM负载特性,使用Q-V分析解释了这种不稳定性的机制。由于能效政策,通过可变速度驱动器(VSD)负载突出显示IM负载的逐步更换,通过时间仿真和分析方法,展示了VSD负载下的增强电压稳定性。此外,分析扩展到现实分配网络,即英国一般分配系统(UKGDS)和广泛的案例研究,以分析IMS和VSD的各种载荷组合物的PV斜坡事件中的电压稳定性。此外,还确定了避免各种PV穿透水平处的电压不稳定性所需的最小VSD渗透水平。

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