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Centralized Control of Distributed Generation Sources in AC Microgrids for Reactive Power Provision

机译:无功功率规划中AC微电网中分布式发电源的集中控制

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The objective of this paper is to develop a control strategy for Distributed Generation (DG) sources connected to an AC microgrid. The microgrid is assumed to be connected to the main power system through a point of common coupling (PCC) and it is required to provide reactive power to the grid according to a set-point delivered by the Transmission System Operator (TSO). Hence, the objective of the developed centralized control is to set reactive power production of each DG sources in such a way that the total power injected at the grid remains equal to the required set-point. The proposed operation mode is very important since it facilitates the management of reactive production of DG sources on the wide grid basis. In other words, with the developed centralized control, the TSO can consider the whole microgrid as a single entity which is able to deliver the mandatory reactive power services allowing voltage stability control in power systems with a high penetration rate of distributed generation systems. Artificial Bee Colony (ABC) is used to elaborate reactive power reference of each DG source. The design and the performances of the developed centralized control are presented through this paper.
机译:本文的目的是开发连接到AC微电网的分布式发电(DG)源的控制策略。假设通过公共耦合(PCC)的点连接微电网,并且需要根据传输系统操作员(TSO)传送的设定点向电网提供无功功率。因此,开发的集中控制的目的是以这样的方式设定每个DG源的无功功率产生,使得在网格处注入的总功率仍然等于所需的设定点。所提出的操作模式非常重要,因为它促进了在宽网格上的DG源的反应性生产的管理。换句话说,通过开发的集中控制,TSO可以考虑整个微电网作为单个实体,该单个实体能够提供强制无功功率服务,允许具有分布式发电系统的高穿透速率的电力系统中的电力系统中的电压稳定性控制。人造蜜蜂菌落(ABC)用于详细化每个DG源的反应功率参考。通过本文提出了开发的集中控制的设计和性能。

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