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Increasing grid transmission capacity and power quality by a new solar inverter concept and inbuilt data communication

机译:通过新的太阳能逆变器概念和内置数据通信来提高电网传输容量和电能质量

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摘要

The proportion of renewable energies in power generation has increased according to the political aims in recent years. In low-voltage grids, these are mostly decentralized renewable energy systems such as photovoltaic (PV) that are connected through the inverters to the grid. The temporary reversal of the power flow causes overvoltage problems. Consequently, regenerative sources need to be turned off temporarily or on the long term the grid infrastructure has to be extended by the utility company. The concept described in this paper uses reactive power which is generated by the solar power inverters to increase power capability and quality of the grid. Thus grid extension can be avoided in many cases or at least can be delayed. Voltage fluctuations due to varying power input, e.g. caused by passing clouds, can be reduced. Additionally, the inverters can be remotely controlled to compensate harmonic distortion and to improve phase voltage balance by feeding unsymmetrical currents into the three phases. Distributed data collection and central control is required for control of a distributed system of multiple solar inverters installed in a grid segment. The concept can be applied not only to PV systems; it is rather a basic technology which can be used in future grids with distributed generation and storage.
机译:近年来政治目标的可再生能源的比例增加。在低压网格中,这些是分散的可再生能源系统,例如通过逆变器连接到电网的光伏(PV)。电流的临时逆转导致过电压问题。因此,需要暂时关闭再生来源,或者在长期内,公司公司必须由公用事业公司延长。本文中描述的概念使用由太阳能逆变器产生的无功功率来提高电网的功率能力和质量。因此,可以在许多情况下避免网格延伸,或者至少可以延迟。例如,电压波动导致的电压波动,例如电源输入。通过云引起的,可以减少。另外,可以远程控制逆变器以补偿谐波失真并通过将不对称电流馈送到三相中来改善相位电压平衡。需要在网格段安装的多个太阳能逆变器的分布式系统所需的分布式数据收集和中央控制。该概念不仅可以应用于光伏系统;它是一种基本技术,可用于具有分布式发电和存储的未来网格。

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