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Decentralized Cluster Voltage optimization Control of an Active Distribution Networks

机译:有源配电网的分散式集群电压优化控制

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With an increasing proportion of renewable energy in the active distribution networks (ADNs), the access to large number of distributed generators (DGs) brings new challenges to control of ADN. With regard to the traditional central control mode, it has high dimensions and complexity, and has high requirements for communication. Based on the clustering of DGs, this paper proposes a decentralized voltage optimization control method based on DG clusters. The proposed control methods are accomplished as follows: 1) the key central point of each cluster is determined according to its voltage characteristics. 2) Then take the reactive power absorption and economic operation as the goals, the decentralized optimization is used to realize the voltage control in local areas, so as to realize the optimal operation of the whole system and avoid the long-distance transportation of reactive power. 3) Finally, an ADN was established in Matlab/Simulink for simulation, which proved that the proposed voltage optimization control has a great optimization effect on the voltages of DGs.
机译:随着有源配电网(ADN)中可再生能源比例的增加,对大量分布式发电机(DG)的访问为ADN的控制带来了新的挑战。对于传统的中央控制方式,它具有较大的规模和复杂性,对通信也有很高的要求。基于DG的聚类,提出了一种基于DG聚类的分散式电压优化控制方法。所提出的控制方法实现如下:1)根据其电压特性确定每个簇的关键中心点。 2)以无功吸收和经济运行为目标,通过分散优化实现局部电压控制,从而实现整个系统的优化运行,避免了无功的长距离输送。 3)最后,在Matlab / Simulink中建立了ADN进行仿真,证明了所提出的电压优化控制对DGs的电压具有很大的优化效果。

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