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Voltage control demonstration for LV networks with controllable der — The SuSTAINABLE project approach

机译:LV网络的电压控制演示可控制DER - 可持续项目方法

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One of the main constraints for Renewable Energy Sources (RES) integration in LV networks are overvoltages caused by changing the normal power flow of the network. In favourable weather conditions high voltages may lead to overvoltage trips thus preventing the injection of renewable energy into the grid. An optimized management of power injection from controlled RES to keep the grid voltage within regulatory limits enables a larger energy output and deployment of distributed generation. The SuSTAINABLE project developed a centralized algorithm based on a hierarchical methodology to control distributed power injection and solve the identified issue. A decentralized algorithm based on a coordinated droop control embedded in the inverters was developed as well. In order to evaluate the proposed algorithms a controllable PV μG and batteries were installed at the end of the feeder of a real LV network operated by EDP Distribui?a?o. The obtained results are presented in this paper and show that a hierarchical methodology to control power injection could optimize RES energy production while maintaining voltages within bounds, thus enabling a larger deployment of RES at the LV levels.
机译:LV网络中可再生能源(RES)集成的主要限制之一是通过改变网络的正常功率而导致的过电压。在有利的天气条件下,高电压可能导致过电压跳闸,从而防止将可再生能量注入到电网中。从受控RES将电网电压保持在监管范围内的功率注入的优化管理使得能量输出和部署的分布式产生。可持续项目开发了一种基于分层方法的集中算法,以控制分布式电力注入并解决所识别的问题。开发了一种基于逆变器中嵌入在逆变器中的协调下垂控制的分散算法。为了评估所提出的算法,可控制的PVμg和电池安装在由EDP分布的真实LV网络的馈送器的末端安装在eDP分布的末端?a?o。本文提出了所得结果,并表明控制功率注入的分层方法可以优化RES能量产生,同时保持界限内的电压,从而能够在LV水平处延长res部署。

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