胡寰宇, 艾欣, 胡俊杰, 王哲, 王坤宇. 考虑频率动态安全的孤岛微网群分布鲁棒调度方法[J]. 电网技术, 2023, 47(12): 5057-5067. DOI: 10.13335/j.1000-3673.pst.2023.1042
引用本文: 胡寰宇, 艾欣, 胡俊杰, 王哲, 王坤宇. 考虑频率动态安全的孤岛微网群分布鲁棒调度方法[J]. 电网技术, 2023, 47(12): 5057-5067. DOI: 10.13335/j.1000-3673.pst.2023.1042
HU Huanyu, AI Xin, HU Junjie, WANG Zhe, WANG Kunyu. Distributionally Robust Optimal Scheduling for Island Microgrid Cluster Considering Frequency Dynamic Security[J]. Power System Technology, 2023, 47(12): 5057-5067. DOI: 10.13335/j.1000-3673.pst.2023.1042
Citation: HU Huanyu, AI Xin, HU Junjie, WANG Zhe, WANG Kunyu. Distributionally Robust Optimal Scheduling for Island Microgrid Cluster Considering Frequency Dynamic Security[J]. Power System Technology, 2023, 47(12): 5057-5067. DOI: 10.13335/j.1000-3673.pst.2023.1042

考虑频率动态安全的孤岛微网群分布鲁棒调度方法

Distributionally Robust Optimal Scheduling for Island Microgrid Cluster Considering Frequency Dynamic Security

  • 摘要: 针对孤岛微网群互联运行下的频率安全问题,提出了一种考虑微网频率时空差异的分布式日前调度方法。首先,提出一种微网群联络线功率振荡及摇摆方程等值模型,基于此推导计及频率差异的频率动态安全约束集;其次,建立孤岛微网群两阶段分布鲁棒日前优化调度模型,利用Copula函数及混合范数建模源荷出力不确定性;然后,通过对偶分解法生成孤岛微网的分布式调度模型,利用嵌套的次梯度与列与约束生成法求解。最后,基于改进的IEEE-15节点算例进行仿真,验证模型日前调度策略在提高孤岛微网群频率安全性上的优势。

     

    Abstract: Aiming to address the issue of frequency security in the interconnected operation of island microgrids, we propose a distributed day-ahead scheduling method that takes into account the spatial and temporal differences in frequency between the microgrids. Firstly, we introduce an equivalent modeling power oscillation and swing equation for the tie-lines of interconnected microgrids. Based on this, we derive a frequency dynamic security constraint set that considers the frequency differences. Secondly, we establish a two-stage distributionally robust optimization model for the day-ahead scheduling of the island microgrid cluster by using the uncertainty of the source-load output using the Copula function and mixed norm. Subsequently, we formulate the distributed optimization model of the microgrid using the dual decomposition and solve it through a combination of the sub-gradient and column and the constraint generation methods. Finally, we conduct simulations using the modified IEEE-15 node system to verify the superiority of our day-ahead scheduling strategy in enhancing the frequency security of the interconnected island microgrids.

     

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