STM Article Repository

Lv, Chen and Sheng, Wanxing and Liu, Keyan and Dong, Xinzhou (2017) Research on Multi-Scale Modeling of Grid-Connected Distributed Photovoltaic Power Generation. Energy and Power Engineering, 09 (04). pp. 127-140. ISSN 1949-243X

[thumbnail of EPE_2017040714191136.pdf] Text
EPE_2017040714191136.pdf - Published Version

Download (471kB)

Abstract

The complexity of distribution network model mainly depends on the model scale of grid-connected distributed photovoltaic (PV) power generation. Therefore, the simulation performance of multi-scale PV model is the key factor of the simulation accuracy in the specific operating scenarios of distribution network. In this paper, a multi-scale model of grid connected PV distributed generation system is proposed based on the mathematical model of grid-connected distributed PV power generation. It is analyzed that differences of simulation performance, such as adaptability of simulation step size, accuracy of output and the effect on voltage profile of distribution network, between PV models with different scales in IEEE 33 node example. Simulation results indicate that the multi-scale model is effective in improving the accuracy and efficiency of simulation under different operating conditions of distribution network.

Item Type: Article
Subjects: GO for ARCHIVE > Engineering
Depositing User: Unnamed user with email support@goforarchive.com
Date Deposited: 17 May 2023 05:45
Last Modified: 01 Nov 2023 05:29
URI: http://eprints.go4mailburst.com/id/eprint/845

Actions (login required)

View Item
View Item