改进配电潮流中先进的逆变器控制收敛性

A. Nagarajan, B. Palmintier, F. Ding, B. Mather, M. Baggu
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引用次数: 2

摘要

现代配电系统潮流仿真越来越需要捕捉先进的光伏逆变器电压调节对潮流的影响。通过伏特/var控制,逆变器将其无功功率流作为共耦合点(PCC)电压的函数进行调整。同样,伏特/瓦特控制作为PCC电压的函数限制了有功功率的产生。然而,对于更大的系统和更高的PV渗透率,这种有功/无功功率流本身会导致PCC电压的显著变化,可能会引入振荡,从而减缓系统模拟的收敛速度。对这些高级逆变器功能的不当处理可能会导致不正确的结果。本文探讨了一种简单的方法来加速这种收敛,通过混合前一次迭代的无功估计来抑制这些振荡。使用该方法,单个大型(5MW)光伏系统和多个500kW先进逆变器的结果显示出显着的改进。
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Improving advanced inverter control convergence in distribution power flow
Simulation of modern distribution system powerflow increasingly requires capturing the impact of advanced PV inverter voltage regulation on powerflow. With Volt/var control, the inverter adjusts its reactive power flow as a function of the point of common coupling (PCC) voltage. Similarly, Volt/watt control curtails active power production as a function of PCC voltage. However, with larger systems and higher penetrations of PV, this active/reactive power flow itself can cause significant changes to the PCC voltage potentially introducing oscillations that slow the convergence of system simulations. Improper treatment of these advanced inverter functions could potentially lead to incorrect results. This paper explores a simple approach to speed such convergence by blending in the previous iteration's reactive power estimate to dampen these oscillations. Results with a single large (5MW) PV system and with multiple 500kW advanced inverters show dramatic improvements using this approach.
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