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Smart-grid-enabled distributed reactive power support with Conservation Voltage Reduction

机译:启用智能电网的分布式无功功率支持,减少保护电压

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As solar energy continues to increase in the current power grid, the reactive power support capability from photovoltaic grid-tie inverters may be used to regulate feeder voltage and reduce system losses on medium- and low-voltage distribution systems. The focus of this paper is to develop a smart-grid-enabled control algorithm that will determine the amount of reactive power injection or absorption required at each node to minimize the deviation from the control voltage level. Once the voltage level is achieved, implementing Conservation Voltage Reduction (CVR) further benefits the system by increasing energy saving. The method is tested on a modified IEEE 13 node feeder system in MATLAB and simulations are performed in OpenDSS using the same system to validate the results.
机译:由于太阳能继续增加电流电网,因此可以使用来自光伏电网连接逆变器的无功功率支撑能力来调节馈线电压并降低介质和低压分布系统上的系统损耗。本文的重点是开发一种智能电网的控制算法,该算法将确定每个节点所需的无功功率注入或吸收量,以最小化与控制电压电平的偏差。一旦实现了电压电平,通过增加节能来实现节能电压减少(CVR)进一步利益。该方法在MATLAB中的修改IEEE 13节点馈线系统上进行测试,并使用相同系统在开关中执行模拟以验证结果。

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