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Active Power Control of Photovoltaic Power Systems

机译:光伏电力系统的电力控制

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Historically, electric power system operators have seen photovoltaic (PV) power systems as potential sources of problems due to intermittency and lack of controllability. However, the flexibility of power electronic inverters allows PV to provide grid-friendly features including volt-VAR control, ramp-rate control, high-frequency power curtailment, and event ride-through. These technologies offer power quality improvements and enable wider penetrations of PV systems. Commercially available smart PV inverters can further provide frequency down-regulation by curtailing power, but they are unable to provide true frequency regulation through active power control (APC) because they are unable to increase power on command. The development of inverters capable of APC for primary and secondary frequency regulation without the need for energy storage has the potential to transform the way grid operators view high PV penetration levels. This paper provides a brief tutorial on APC of PV inverters, summarizes state of the art research in the area, and suggests future research directions.
机译:从历史上看,电力系统操作员已经看到光伏(PV)电力系统作为由于间歇性和缺乏可控性而导致的潜在问题。然而,电力电子逆变器的灵活性允许PV提供网格友好的功能,包括Volt-Val控制,斜率控制,高频电源缩减和事件驾驶。这些技术提供电力质量改进,并实现光伏系统的更广泛的渗透。商业上可获得的智能光伏逆变器可以通过缩减电源来进一步提供频率下调,但是由于它们无法通过启动命令来提供真正的频率调节。能够为初级和二次频率调节提供APC的逆变器的开发,而无需能量存储的需要具有转换网格运营商的推动方式观看高PV穿透水平。本文在PV逆变器的APC上提供了一篇简短的教程,总结了该地区的艺术研究的态度,并提出了未来的研究方向。

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