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Evaluation of reactive power control concepts for PV inverters in low-voltage grids

机译:低压电网中光伏逆变器的无功功率控制概念评估

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The proportion of renewable energies in power generation has increased significantly in recent years according to the political aims. In low-voltage grids, these are mostly distributed intermittent generation systems such as photovoltaic systems that are connected through inverters to the grid. Thus, the distribution networks have to meet hitherto unfamiliar technical challenges. A temporary reversal of the power flow can cause overvoltage problems. Traditional voltage regulation strategies cannot solve this problem. Consequently, regenerative sources need to be turned off temporarily or on the long term the grid infrastructure has to be extended by the network operator. Therefore, the distributed generation has to take part in the voltage regulation. With the help of reactive power, which is generated by the solar inverters, power capability and voltage quality of the networks can be increased. Thus, grid extension can be delayed or even avoided in many times. This paper presents a new approach to the evaluation of reactive power control strategies. Different reactive power control concepts are simulated and evaluated concerning their efficiency, effectiveness and stability.
机译:根据政治目标,近年来可再生能源在发电中的比例已大大增加。在低压电网中,这些大多是分布式间歇式发电系统,例如通过逆变器连接至电网的光伏系统。因此,分销网络必须应对迄今为止不熟悉的技术挑战。功率流的暂时逆转会导致过压问题。传统的电压调节策略无法解决此问题。因此,需要暂时关闭再生电源,或者长期而言,必须由网络运营商扩展电网基础设施。因此,分布式发电必须参与电压调节。借助太阳能逆变器产生的无功功率,可以提高网络的功率容量和电压质量。因此,网格扩展可以多次延迟甚至避免。本文提出了一种评估无功功率控制策略的新方法。对不同的无功功率控制概念进行了仿真和评估,涉及其效率,有效性和稳定性。

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