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A Fully Distributed Active Power Control Method with Minimum Generation Cost in Grid-Connected Microgrids

机译:一种完全分布的有源电力控制方法,具有最小的网格连接的微电网中成本

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Microgrids are always connected to utility grid and the grid connection code must be satisfied. Therefore, it's necessary to control the exchanged active power between microgrids and utility grid on point of common coupling (PCC) by regulating distributed resources (DERs). In this paper, this control problem is formulated firstly. Then a distributed method is proposed to solve this problem with minimum generation cost, which is based on consensus algorithm and no central coordinator is needed. To speed up the power control process, control signals updated with latest local measurements are executed in each iteration step instead of a consensus achieved. Numerical tests are given to illustrate validity and good performance of the proposed method by a comparison to a centralized method. Besides, applicability of the method is also discussed under the condition of communication delays.
机译:MicroGrids始终连接到实用电网,必须满足网格连接代码。因此,通过调节分布式资源(DERS),必须通过调节分布式资源(DER)来控制微电网和效用网格之间的交换的有效电力。在本文中,首先制定了该控制问题。然后,提出了一种分布式方法以解决该问题的最小代价,基于共识算法,并且不需要中央协调器。为了加快功率控制过程,在每次迭代步骤中执行使用最新局部测量更新的控制信号而不是实现的共识。通过与集中方法的比较,给出了数值测试来说明所提出的方法的有效性和良好性能。此外,还在通信延迟的条件下讨论了该方法的适用性。

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