考虑多并网点集成能源微网的智能配电网分布式优化调度方法

IF 1.6 Q4 ENERGY & FUELS IET Energy Systems Integration Pub Date : 2022-12-15 DOI:10.1049/esi2.12089
Bing Sun, Ruipeng Jing, Yuan Zeng, Leijiao Ge, Gang Liang, Shimeng Dong
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引用次数: 2

摘要

随着分布式发电(DG)装机容量的增加,综合能源微电网(IEMG)与智能配电网(SDN)之间的电力交互需求迅速增长。当SDN和IEMG通过单个并网点连接时,可再生能源的消耗可能受到联络线容量的限制。提出了一种考虑多并网点IEMG的SDN分布式优化调度方法。还考虑了各种灵活资源的影响。首先,设计了一种IEMG连接方式,每个IEMG可以连接到SDN的多个节点。提出了一种考虑IEMG运行隐私性和SDN消耗可再生能源责任的分布式优化调度方法。然后,以联络线上的电力为耦合变量,建立了IEMG与SDN的协调调度模型。该模型可通过循环调整联络线的功率上限来求解。最后,对改进后的IEEE 33总线系统进行了分析。研究发现,当IEMG DG装机容量较大时,多个并网点可以提高SDN的运营灵活性,增加各实体的运营效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Distributed optimal dispatching method of smart distribution network considering integrated energy microgrid with multiple gird-connected points

The interactive demand of electrical power between integrated energy microgrid (IEMG) and smart distribution network (SDN) is growing rapidly with the increase of distributed generation (DG) installed capacity. When SDN and IEMG are connected through a single gird-connected point, the renewable power consumption may be limited by tie-line capacity. A distributed optimal dispatching method of the SDN considering the IEMG with multiple gird-connected points is proposed. The impact of various flexible resources is also considered. Firstly, a IEMG connection mode, in which each IEMG can be connected to multiple nodes of the SDN, is designed. A distributed optimal dispatching method is proposed, by which the IEMG operation privacy and the SDN responsibility to consume renewable power can be considered. Then, the electric power on tie-lines is taken as the coupling variable to establish the IEMG and SDN coordinated dispatching model. The model can be solved by adjusting the power upper limits of tie-lines circularly. Finally, the improved IEEE 33-bus system is analysed based on the proposed method. It is found that when the IEMG is with large DG installed capacity, multiple gird-connected points can improve the SDN operation flexibility and increase the operation benefits of all entities.

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来源期刊
IET Energy Systems Integration
IET Energy Systems Integration Engineering-Engineering (miscellaneous)
CiteScore
5.90
自引率
8.30%
发文量
29
审稿时长
11 weeks
期刊最新文献
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