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Distributed Optimal Control for Stability Enhancement of Microgrids With Multiple Distributed Generators

机译:带有多个分布式发电机的微电网稳定性增强的分布式最优控制

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摘要

The distributed secondary control in a microgrid can be used for complementing the function of the primary droop-based control. However, its dynamic performance may be undesirable and furthermore it may introduce new less-damped modes to the system leading to oscillatory responses. Unfortunately, mechanism analysis of the undesirable dynamic performance and the possible oscillations, and more importantly, stabilization of the microgrid with the distributed secondary control have not been reported. To fill this gap, this paper first develops a unified small-signal dynamic model of the microgrid. Based on the developed model, a small-signal stability analysis is utilized to perform the aforementioned mechanism analysis. A distributed optimal controller is thereafter proposed to enhance the system stability and improve the system dynamic performance. The distributed optimal controller can coordinate multiple distributed generation units in the microgrid and exhibits robust performance under a wide range of operating conditions. Finally, theoretical analysis and time-domain simulation results on a benchmark microgrid system are provided to verify the effectiveness of the proposed methods.
机译:微电网中的分布式辅助控件可用于补充基于主下降的控件的功能。然而,其动态性能可能是不希望有的,此外,它可能会向系统引入新的阻尼较小的模式,从而导致振荡响应。不幸的是,尚未报告对不良动态性能和可能发生的振荡进行机制分析,更重要的是,未通过分布式辅助控制稳定微电网。为了填补这一空白,本文首先建立了微电网的统一小信号动态模型。基于开发的模型,利用小信号稳定性分析来执行上述机制分析。此后,提出了一种分布式最优控制器,以提高系统稳定性并改善系统动态性能。分布式最优控制器可以协调微电网中的多个分布式发电单元,并在广泛的运行条件下表现出强大的性能。最后,在基准微电网系统上提供了理论分析和时域仿真结果,以验证所提出方法的有效性。

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