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Optimal Volt-VAR and Volt-Watt Droop Settings of Smart Inverters

机译:智能逆变器的最佳Volt-VAR和Volt-Watt下垂设置

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Voltage optimization and control becomes imperative with increased use of distributed energy resources in distribution feeders. Smart inverters (SIs) can be used effectively for voltage control and optimization especially for fast varying voltage fluctuation caused by high photovoltaic penetration. The local voltage control settings of SIs are typically obtained using rule-based or sensitivity-based methods. This paper presents an optimization framework to find the SIs' local volt-var and volt-watt settings that support certain grid level objectives. In this context, we develop an optimal power flow (OPF) model by integrating SIs' volt-var and volt-watt droop settings as optimization variables. We demonstrate the efficacy of the proposed method using the IEEE 123-node system with 10 SIs (5 in volt-var mode and 5 in volt-watt mode). The results show that it is feasible to obtain optimal droop settings of SIs for autonomous voltage and reactive power control that benefits the grid operations.
机译:电压优化和控制在分配馈线中使用分布式能量资源的使用增加。智能逆变器(SIS)可以有效地用于电压控制和优化,特别是对于高光伏渗透引起的快速变化电压波动。 SI的局部电压控制设置通常使用基于规则的或基于灵敏度的方法获得。本文提出了一个优化框架,用于找到支持某些网格级目标的SIS'本地Volt-VAR和Volt-Watt设置。在此上下文中,我们通过将SIS'VAR VAR和VOLT-WATT下垂设置集成为优化变量,开发最佳电流(OPF)模型。我们展示了所提出的方法使用IEEE 123节点系统具有10个SIS(5在Vol-VAR模式和5中的5个中的5)的功效。结果表明,获得自动电压和无功功率控制的SIS的最佳下垂设置是可行的,有利于电网运行。

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