论文标题

基于负载需求和光伏电力生产的未来趋势,具有P2P电力交易的纳米级群集的电力管理

Power Management of Nanogrid Cluster with P2P Electricity Trading Based on Future Trends of Load Demand and PV Power Production

论文作者

Lee, Sangkeum, Jin, Hojun, Vecchietti, Luiz Felipe, Hong, Junhee, Park, Ki-Bum, Har, Dongsoo

论文摘要

本文介绍了纳米簇簇的电力管理,并在新颖的对等电力交易中提供了辅助。在我们的工作中,拟议的P2P交易方法可以减轻簇之间的功耗不平衡。对于单个群集的功率管理,尝试同时最大程度地减少总功耗,一部分电网功耗以及通过调度产生的总延迟。每个集群作为次级源采用可再生电源光伏(PV)系统。群集的自供应PV功率的时间盈余可以通过P2P交易出售给另一个经历时间功率短缺的集群。暂时性电力短缺的群集可获得PV功率,以减少峰值负载和总延迟。在P2P交易中,使用合作游戏模型,用于买卖双方,以最大程度地提高其福利。为了提高P2P交易效率,考虑到每个集群的电力管理的负载需求和PV功率生产的未来趋势,以解决负载需求和PV功率生产之间的瞬时不平衡。为此,使用封闭式的复发单元网络预测未来的负载需求和未来的PV功率生产。模拟验证了拟议的P2P交易对纳米簇的有效性。

This paper presents the power management of the nanogrid clusters assisted by a novel peer-to-peer(P2P) electricity trading. In our work, unbalance of power consumption among clusters is mitigated by the proposed P2P trading method. For power management of individual clusters, multi-objective optimization simultaneously minimizing total power consumption, portion of grid power consumption, and total delay incurred by scheduling is attempted. A renewable power source photovoltaic(PV) system is adopted for each cluster as a secondary source. The temporal surplus of self-supply PV power of a cluster can be sold through P2P trading to another cluster (s) experiencing temporal power shortage. The cluster in temporal shortage of electric power buys the PV power to reduce peak load and total delay. In P2P trading, a cooperative game model is used for buyers and sellers to maximize their welfare. To increase P2P trading efficiency, future trends of load demand and PV power production are considered for power management of each cluster to resolve instantaneous unbalance between load demand and PV power production. To this end, a gated recurrent unit network is used to forecast future load demand and future PV power production. Simulations verify the effectiveness of the proposed P2P trading for nanogrid clusters.

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