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Development of Flexible Active Power Control Strategies for Grid-Connected Photovoltaic Inverters by Modifying MPPT Algorithms

机译:通过改进mppT算法开发并网光伏逆变器的柔性有源功率控制策略

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摘要

As the penetration level of grid-connected PV systems increases, more advanced control functionality is demanded. In order to ensure smooth and friendly grid integration as well as enable more PV installations, the power generated by PV systems needs to be flexible and capable of: 1) limiting the maximum feed-in power, 2) ensuring a smooth change rate, and 3) providing a power reserve. Besides, such flexible power control functionalities have to be achieved in a cost-effective way in order to ensure the competitiveness of solar energy. Therefore, this paper explores flexible active power control strategies for grid-connected PV inverters by modifying maximum power point tracking algorithms, where the PV power is regulated by changing the operating point of the PV system. In this way, no extra equipment is needed, being a cost-effective solution. Experiments on a 3-kW grid-connected PV system have been performed, where the developed flexible active power control functionalities are achieved per demands.
机译:随着并网光伏系统的普及程度的提高,需要更高级的控制功能。为了确保平滑友好的电网集成并支持更多的光伏装置,光伏系统产生的电力必须灵活且具有以下能力:1)限制最大馈入电力; 2)确保平稳的变化率;以及3)提供动力储备。此外,必须以经济有效的方式实现这种灵活的功率控制功能,以确保太阳能的竞争力。因此,本文通过修改最大功率点跟踪算法探索了并网光伏逆变器的灵活的有功功率控制策略,该算法通过更改光伏系统的工作点来调节光伏功率。这样,不需要额外的设备,这是一种经济高效的解决方案。已经进行了3kW并网光伏系统的实验,其中根据需求实现了已开发的灵活的有功功率控制功能。

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