Electric Spring-Based Power Flow Routers for Economic Enhancement of the Microgrid Cluster Based on Smart Homes

Kaiyuan Wang, Y. Mao, Chendan Li
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引用次数: 1

Abstract

High penetrations of intermittent renewable energy sources (RES) in smart homes necessitate the power flow management. The recently proposed electric springs (ES), as alternatives to the conventional energy storage systems (ESS), can regulate the power flow with smaller battery capacities as compared to that of the ESS. This greatly increases the economic value of smart homes, as batteries of the domestic ESS are quite expensive. In this paper, a concept of having the ES equipped with communicate ports that connect with a home user’s portable devices, hereon known as ES-based power flow routers (PFR), to mitigate the distribution line power loss, is proposed. By raising the power utilization, the economic value can be further enhanced. Case studies are carried out in MATLAB/SIMULINK to verify the effectiveness of ES in stabilizing a five-bus home microgrid, instead of using the conventional ESS. Besides, it is validated that the ES-based PFR can save substantial payments of electricity bills through the reduction of the distribution power loss.
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基于智能家居的微电网集群经济提升的电弹簧潮流路由器
间歇性可再生能源(RES)在智能家居中的高渗透率使得潮流管理成为必要。最近提出的电动弹簧(ES)作为传统储能系统(ESS)的替代品,可以用比ESS更小的电池容量来调节功率流。这大大提高了智能家居的经济价值,因为家用ESS的电池相当昂贵。在本文中,提出了一种概念,即让ES配备与家庭用户的便携式设备(此处称为基于ES的功率流路由器(PFR))连接的通信端口,以减轻配电线路的功率损耗。通过提高电力利用率,可以进一步提高经济价值。在MATLAB/SIMULINK中进行了实例研究,验证了ES在稳定五总线家庭微电网中的有效性,而不是使用传统的ESS。此外,验证了基于es的PFR可以通过减少配电损耗来节省大量的电费支付。
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