作者:
Zhao, WeiShao, ZhenYang, ShanlinLu, XinhuiHefei Univ Technol
Sch Management Hefei 230009 Peoples R China Minist Educ
Key Lab Proc Optimizat & Intelligent Decis Making Hefei 230009 Peoples R China Hefei Univ Technol
Philosophy & Social Sci Lab Data Sci & Smart Soc G Minist Educ Hefei 230009 Peoples R China Minist Educ
Engn Res Ctr Intelligent Decis Making & Informat S Hefei 230009 Peoples R China
The intermittency of renewable energy and the volatility of multi-energy loads result in multiple jointsource- load uncertainties and source-load spatio-temporal mismatch for the scenariogeneration of deep decarboni...
详细信息
The intermittency of renewable energy and the volatility of multi-energy loads result in multiple jointsource- load uncertainties and source-load spatio-temporal mismatch for the scenariogeneration of deep decarbonized power systems (DDPSs). To address these challenges, a novel model named conditional diffusion-based scenariogeneration (CDSG) is proposed for controllable joint source-load scenario generation (controllable-JSLSG). The CDSG model incorporates a specialized scenario noise prediction network that includes a conditional spatiotemporal fusion module (CSTFM) and a conditional scenario noise estimation module (CSNEM). Specifically, the CSTFM is devised to excavate the complex spatio-temporal correlations among source-loadscenarios, and the CSNEM is utilized to adaptively learn the weights between condition information and source-loadscenarios. Then the pretrained CDSG effectively models the nonlinear and irregular spatio-temporal dynamics of source- load, contributing to the controllability and diversity of the generated source-loadscenarios. Results verified on real-world datasets demonstrate that CDSG can generate source-loadscenarios satisfying dynamic fluctuation properties and frequency-domain characteristics, and ensuring the complex spatio-temporal correlations can be captured. Moreover, compared with other advanced benchmarks, CDSG achieves optimal diversity while maintaining high-quality, indicating its potential for the generation of realistic and diverse jointsource-loadscenarios. Finally, an optimal dispatch of DDPS is also simulated to evaluate the practical feasibility of the source-loadscenarios generated by CDSG.
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