逆变器无功局部调度的仿射可调鲁棒对等法

I. Mousa, R. Jabr
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引用次数: 3

摘要

光伏发电渗透程度高的配电系统,会因电压波动超出可接受水平而导致电能质量下降;这是由于光伏发电机组快速变化的发电水平可能导致反向功率流造成的。目前安装的调节设备,如负载下分接变化变压器,步进稳压器和开关电容器是缓慢的;它们不能对快速变化的发电水平提供足够的响应。一种建议的解决方案是引入快速反应的光伏逆变器,它可以消耗或提供无功功率,以解决配电网上的电压下降和膨胀问题,同时也为电网运营商提供了优化热损失的机会。针对光伏逆变器无功最优局部调度问题,提出了一种仿射可调鲁棒对应(AARC)方法;它考虑了光伏发电水平的不确定性,旨在最小化与标称电压水平的最大绝对电压值偏差。数值结果证实了该方法在减小最大电压绝对值偏差和系统功率损耗方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Affinely Adjustable Robust Counterpart Approach for Local Dispatching of the Inverter’s Reactive Power
An electrical distribution system with high penetration levels of photovoltaic (PV) generation is exposed to degradation in power quality due to voltage fluctuation beyond the acceptable levels; this is caused by the rapidly varying generation levels from the PV generators possibly causing reverse power flows. Currently installed regulation equipment like under load-tap changing transformers, step voltage regulators, and switched capacitors are slow; they cannot provide an adequate response to the fast varying generation levels. A proposed solution is the introduction of fast-reacting PV inverters that can consume or supply reactive power to account for the voltage sags and swells on the distribution network, and that also provide the network operators with the opportunity to optimize thermal losses. This paper presents an affinely adjustable robust counterpart (AARC) approach for the optimal local dispatch of reactive power from the PV inverters; it accounts for uncertainty in the photovoltaic generation levels and aims to minimize the maximum absolute voltage magnitude deviation from the nominal voltage level. Numerical results confirmed the effectiveness of the proposed approach in reducing both the maximum absolute voltage magnitude deviation and the system power loss.
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