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Inverter-based hybrid compensation systems contributing to grid stabilization in medium voltage distribution networks with decentralized, renewable generation

机译:基于逆变器的混合补偿系统,通过分散的可再生发电为中压配电网的电网稳定做出贡献

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摘要

Medium voltage grids are subject to a change in load situation due to the installation of decentralized generation plants. Predominantly load symmetry, active and reactive power as well as the required capacity of earth fault compensation are affected. Inverter-based plants as well as consumers using switching power supplies or phase control cause distortions of frequency. Simultaneously, electrical energy storage is gaining importance within rural distribution networks to compensate fluctuating generation plants. A hybrid compensation system includes a transformer, a multiphase inverter, diverse storage systems and a communication-capable control unit, which may be connected to the control center of the distribution system operator (DSO). It is object to current research activities to design and evaluate the functions of the superordinate control unit, which has to parametrize individual components, coordinate the energy flows between them and to embed several measuring instruments. Within the present work, basic considerations for design of system control are outlined.
机译:由于安装了分散式发电厂,中压电网的负载情况可能会发生变化。主要影响负载对称性,有功和无功功率以及所需的接地故障补偿能力。基于逆变器的工厂以及使用开关电源或相位控制的用户会导致频率失真。同时,电能存储在农村配电网络中正变得越来越重要,以补偿波动的发电厂。混合补偿系统包括变压器,多相逆变器,各种存储系统和具有通信功能的控制单元,可以将其连接到配电系统操作员(DSO)的控制中心。当前研究活动的目的是设计和评估上级控制单元的功能,该功能必须参数化单个组件,协调它们之间的能量流并嵌入多个测量仪器。在本工作中,概述了系统控制设计的基本注意事项。

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