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Superordinate Control for Increasing Feed-in Capacity and Improving Power Quality in Low Voltage Distribution Grids

机译:用于增加进料容量的上级控制,提高低压分布网格中的电力质量

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The ever increasing amount of distributed generation in low voltage distribution grids (mainly PV and micro-CHP) can lead to reverse load flows from low to medium / high voltage levels at times of high feed-in. Reverse load flow leads to rising voltages that may even exceed the limits specified in the grid codes. Furthermore, the share of electrical loads connected to low voltage distribution grids via switched power supplies continuously increases. This paper illustrates a possible concept for smart grids in order to increase the feed-in capacity, improve power quality and to ensure safe operation of low voltage distribution grids at all times. The key feature of the concept is a hierarchically structured control strategy that is run on a superordinate controller, which is connected to several distributed grid analyzers and inverters via broadband over power line (BPL). The control strategy is devised to ensure both quick response times as well as a smart usage of the available inverters in the grid (PV-inverters, batteries, stepless line voltage regulators). The presented results have been obtained during the government-funded project "Verteilnetz 2020".
机译:低电压分布网格(主要PV和Micro-CHP)的分布产生量的增加可能导致在高进料中的低至中/高电压电平的反向负载流。反向负载流量导致甚至超过网格代码中指定的限制的上升电压。此外,通过开关电源连接到低电压分布网格的电负载的份额连续增加。本文说明了智能电网的可能概念,以提高进料容量,提高功率质量,并始终确保低压配电电网的安全运行。该概念的关键特征是一种分层结构化控制策略,该控制策略在上级控制器上运行,其通过电源线(BPL)通过宽带连接到多个分布式电网分析仪和逆变器。设计了控制策略,以确保快速响应时间以及电网中可用逆变器的智能使用(PV-逆变器,电池,无级线电压调节器)。在政府资助的项目“Verteilnetz 2020”中获得了所提出的结果。

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