基于集群划分的分布式可再生能源双层规划方法

Xiang Li, Gaoming Li, Zefu Wang, Zijia Kuang, Ting Chen, Tianlun Wang
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引用次数: 0

摘要

针对大规模分布式可再生能源资源和负荷优化规划问题,提出了一种基于集群划分的分布式可再生能源双层规划方法,以实现分布式可再生能源集群整体效益最大化。上层以集群间的能量交换和系统的最优稳定可靠性为指导原则,建立以集群相似性和有功均衡为核心的综合性能指标,得到最优的集群划分结果。下层以经济性和可靠性为目标。将每个集群视为一个新的规划单元,采用综合规划方法进行容量分配和网格设计,并将优化结果反馈给上层集群划分。两层之间的交叉迭代形成了分布式可再生能源集群规划的闭环规划设计方法。算例表明,该方法有效地减少了分布式可再生能源集群的储能容量配置,提高了集群的经济性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Bi-level Planning Method of Distributed Renewable Energy Based on Cluster Division
Aiming at the problem of optimal planning of large-scale distributed renewable energy resources and loads, a distributed renewable energy bi-level planning method based on cluster division was proposed to maximize the overall benefits of distributed renewable energy clusters. The upper layer takes the energy exchange between clusters and the optimal stability and reliability of the system as the guiding principle, and establishes a comprehensive performance index with cluster resemblance and active power balance as the core to obtain the optimal cluster division result. The lower layer takes economy and reliability as the goal. Each cluster is regarded as a new planning unit, and the integrated planning method is used for capacity allocation and grid design, and the optimization results are fed back to the upper cluster division. Cross iteration between two layers forms a closed-loop planning and design method for distributed renewable energy cluster planning. The example shows that the proposed method effectively reduces the energy storage capacity configuration of distributed renewable energy cluster and improves its economy and reliability.
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