中圖分類號(hào):TN8 文獻(xiàn)標(biāo)志碼:A DOI: 10.16157/j.issn.0258-7998.233899 中文引用格式: 宋彥斌,汪莞喬,張慧,等. 分布式“源荷儲(chǔ)”資源協(xié)同互動(dòng)異構(gòu)組網(wǎng)方法與仿真實(shí)現(xiàn)[J]. 電子技術(shù)應(yīng)用,2024,50(3):73-79. 英文引用格式: Song Yanbin,Wang Wanqiao,Zhang Hui,et al. Heterogeneous networking and simulation implementation for distributed “source-load-storage” resource collaborative interaction[J]. Application of Electronic Technique,2024,50(3):73-79.
Heterogeneous networking and simulation implementation for distributed “source-load-storage” resource collaborative interaction
Song Yanbin1,Wang Wanqiao1,Zhang Hui1,Guan Luyao1,Ding Huixia1,Gao Kaiqiang1,Yao Xianjiong2,Xiang Jiani2
1.China Electric Power Research Institute Co., Ltd., Beijing 100192, China; 2.State Grid Shanghai Electric Power Company, Shanghai 200030, China
Abstract: To effectively improve the collaborative interaction ability of massive distributed “source-load-storage” resources in the new power system, this paper develops heterogeneous networking and simulation implementation for distributed “source-load-storage” resource collaborative interaction. The “three-layers and two-networks” distributed resource collaborative interactive network architecture is constructed. Based on the analysis of typical modeling requirements of interactive services such as peak regulation, frequency modulation and demand response, a distributed resource cooperative interactive communication network model is established through OMNeT++ platform, and a communication simulation platform is built according to the actual operating characteristics of the network, realizing the multi-scenario simulation of the performance of distributed “source-load-storage” resource cooperative interactive network. This provides a quantitative analysis tool for the development of distributed resource cooperative interaction services and plays an important supporting role in the construction of new power system and the improvement of new energy consumption capacity.
Key words : new power system;distributed “source-load-storage” resource;collaborative interaction;heterogeneous networking;cloud-edge collaboration