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Distributed Optimal Reactive Power Control in Islanded Microgrids with Voltage-Source Inverters

机译:具有电压源逆变器的孤岛微电网中的分布式最优无功功率控制

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Microgrids are foreseen to be an essential part of the future smart grid. Control of islanded microgrid systems to maintain stability and security is, therefore, a pressing problem. While local control can ensure that each resource within a microgrid shares active power equally, nonlocal methods are needed to share reactive power. This paper aims to develop centralized and distributed control laws to share power equitably among distributed generation resources in an islanded microgrid. While the centralized law shows good convergence to an optimal solution, the distributed law struggles to reach consensus among buses on the optimal solution and converges very slowly. Next, we demonstrate that optimized linear averaging consensus algorithms bridge the gap between the high-performance centralized methods and low communication distributed methods.
机译:预计微电网是未来智能电网的重要组成部分。 因此,控制岛状微电网系统,以保持稳定性和安全性是压迫问题。 虽然本地控制可以确保微电网中的每个资源同样地,但是,需要非识别方法来共享无功功率。 本文旨在开发集中化和分布式控制法律,在岛状微电网中分布式发电资源中公平地分配电力。 虽然集中式法律对最佳解决方案显示出良好的融合,但分布式法律努力在最佳解决方案上的公共汽车之间达成共识,并融合得非常缓慢。 接下来,我们证明优化的线性平均共识算法桥接高性能集中方法和低通信分布式方法之间的间隙。

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