Research on Multi-Timescale Coordinated Method for Source-Grid-Load with Uncertain Renewable Energy Considering Demand Response

Author:

Ning Jia,Hao Sipeng,Zeng AidongORCID,Chen Bin,Tang Yi

Abstract

The high penetration of renewable energy brings great challenges to power system operation and scheduling. In this paper, a multi-timescale coordinated method for source-grid-load is proposed. First, the multi-timescale characteristics of wind forecasting power and demand response (DR) resources are described, and the coordinated framework of source-grid-load is presented under multi-timescale. Next, economic scheduling models of source-grid-load based on multi-timescale DR under network constraints are established in the process of day-ahead scheduling, intraday scheduling, and real-time scheduling. The loads are classified into three types in terms of different timescale. The security constraints of grid side and time-varying DR potential are considered. Three-stage stochastic programming is employed to schedule resources of source side and load side in day-ahead, intraday, and real-time markets. The simulations are performed in a modified Institute of Electrical and Electronics Engineers (IEEE) 24-node system, which shows a notable reduction in total cost of source-grid-load scheduling and an increase in wind accommodation, and their results are proposed and discussed against under merely two timescales, which demonstrates the superiority of the proposed multi-timescale models in terms of cost and demand response quantity reduction.

Funder

University Natural Science Research General Project of Jiangsu Province

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Optimal Source-Grid-Load Coordinated Scheduling of the Distribution Network Considering Economic and Environmental Benefits;2022 IEEE Symposium Series on Computational Intelligence (SSCI);2022-12-04

2. Source Load Interval Coordinated Scheduling of New Energy Grid with Load Fluctuation;Journal of Physics: Conference Series;2022-12-01

3. Cost-benefit Analysis of Virtual Power Plant for Demand Response Scenario;2022 9th International Forum on Electrical Engineering and Automation (IFEEA);2022-11-04

4. Demand response ability evaluation based on seasonal and trend decomposition using LOESS and S–G filtering algorithms;Energy Reports;2022-08

5. Massive load control technology for a double-layer grid regulation;2022 Power System and Green Energy Conference (PSGEC);2022-08

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