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Electricity Self-Sufficient Community Clustering for Energy Resilience

机译:电力自给自足的社区集群,提高能源弹性

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Local electricity generation and sharing has been given considerable attention recently for its disaster resilience and other reasons. However, the process of designing local sharing communities (or local grids) is still unclear. Thus, this study empirically compares algorithms for electricity sharing community clustering in terms of self-sufficiency, sharing cost, and stability. The comparison is performed for all 12 months of a typical year in Yokohama, Japan. The analysis results indicate that, while each individual algorithm has some advantages, an exhaustive algorithm provides clusters that are highly self-sufficient. The exhaustive algorithm further demonstrates that a clustering result optimized for one month is available across many months without losing self-sufficiency. In fact, the clusters achieve complete self-sufficiency for five months in spring and autumn, when electricity demands are lower.
机译:由于其灾难复原力和其他原因,最近本地发电和共享受到了广泛关注。但是,设计本地共享社区(或本地网格)的过程仍然不清楚。因此,本研究在自给自足,共享成本和稳定性方面从经验上比较了用于电力共享社区聚类的算法。比较是在日本横滨的典型年份的所有12个月内进行的。分析结果表明,尽管每个单独的算法都有一些优势,但是穷举算法提供了高度自给自足的群集。详尽的算法进一步证明,经过一个月优化的聚类结果可在多个月内获得,而不会失去自给自足。实际上,当电力需求较低时,这些集群在春季和秋季可以实现五个月的完全自给自足。

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