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A Self-Organizing Strategy for Power Flow Control of Photovoltaic Generators in a Distribution Network

机译:配网中光伏发电机潮流控制的自组织策略

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The focus of this paper is to develop a distributed control algorithm that will regulate the power output of multiple photovoltaic generators (PVs) in a distribution network. To this end, the cooperative control methodology from network control theory is used to make a group of PV generators converge and operate at certain (or the same) ratio of available power, which is determined by the status of the distribution network and the PV generators. The proposed control only requires asynchronous information intermittently from neighboring PV generators, making a communication network among the PV units both simple and necessary. The minimum requirement on communication topologies is also prescribed for the proposed control. It is shown that the proposed analysis and design methodology has the advantages that the corresponding communication networks are local, their topology can be time varying, and their bandwidth may be limited. These features enable PV generators to have both self-organizing and adaptive coordination properties even under adverse conditions. The proposed method is simulated using the IEEE standard 34-bus distribution network.
机译:本文的重点是开发一种分布式控制算法,该算法将调节配电网络中多个光伏发电机(PV)的功率输出。为此,网络控制理论中的合作控制方法被用于使一组光伏发电机收敛并以一定(或相同)的可用功率比运行,这取决于配电网和光伏发电机的状态。 。所提出的控制仅需要间歇地来自相邻的PV发电机的异步信息,使得PV单元之间的通信网络既简单又必要。还为建议的控制规定了对通信拓扑的最低要求。结果表明,所提出的分析和设计方法具有以下优点:相应的通信网络是本地的,其拓扑结构可以随时间变化,并且其带宽可能受到限制。这些功能使PV发电机即使在不利条件下也具有自组织和自适应协调特性。所提出的方法是使用IEEE标准34总线配电网络进行仿真的。

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