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Distributed Economic Dispatch for Energy Internet Based on Multiagent Consensus Control

机译:基于多算法共识控制的能源互联网分布式经济派遣

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We consider the economic dispatch (ED) for an Energy Internet composed of energy routers (ERs), interconnected microgrids, and main grid. The microgrid consists of several bus nodes associated with distributed generators (DGs) and intelligent control units (ICUs). We propose a distributed ED algorithm for the grid-connected microgrid, where each ICU iterates the estimated electricity price of the distribution system and the estimation for the average power mismatch of the whole microgrid by leader-following and average-consensus algorithms, respectively. The ER iterates the incremental power exchanged with the distribution system. By constructing an auxiliary consensus system, we prove that if the communication topology of the Energy Internet contains a spanning tree with the ER as the root and there is a path from each ICU to the ER, then the estimated electricity price of the distribution system converges to its real value, the power supply and demand achieves balance and the ED achieves optimal asymptotically. Furthermore, we propose an autonomous distributed ED algorithm covering both grid-connected and isolated modes of the microgrid by feeding back the estimated average power mismatch for updating the incremental costs with penalty factor. It is proved that if the communication topology of the microgrid is connected and there exists an ICU bidirectionally neighboring the ER, then the microgrid can switch between the two modes reliably. The simulation results demonstrate the effectiveness of the proposed algorithms.
机译:我们考虑由能源路由器(ERS),相互连接的微电网和主电网组成的能源互联网的经济调度(ED)。 MicroGrid由多个与分布式发电机(DGS)和智能控制单元(ICU)相关的总线节点组成。我们提出了一种用于网格连接的MicroGrid的分布式ED算法,其中每个ICU迭代分配系统的估计电价,并分别通过领导者跟随和平均共识算法估算整个微电网的平均功率不匹配。 ER迭代与分配系统交换的增量功率。通过构建辅助共识系统,我们证明,如果能量互联网的通信拓扑包含具有ER的生成树作为根,并且每个ICU到ER的路径,则分配系统的估计电价会聚为了其实际价值,电源和需求实现平衡,ED实现最佳渐近。此外,我们提出了一种自主分布式ED算法,通过送回估计的平均功率不匹配来覆盖微电网的网格连接和隔离模式,以便利用惩罚因素更新增量成本。事实证明,如果将微电网的通信拓扑连接并且存在双向相邻的ICU,则微电网可以可靠地在两种模式之间切换。仿真结果证明了所提出的算法的有效性。

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