概率逻辑
计算机科学
概率预测
分位数回归
人工智能
特征提取
数据挖掘
背景(考古学)
机器学习
帕累托原理
模糊逻辑
人工神经网络
粒度
需求预测
工程类
数学优化
运筹学
数学
古生物学
生物
操作系统
作者
Jianzhou Wang,Kang Wang,Zhiwu Li,Haiyan Lu,He Jiang,Qianyi Xing
标识
DOI:10.1109/tpwrs.2023.3257353
摘要
Spinning reserve without accurate load forecasting can lead to automatic disconnection of critical loads by under-frequency load shedding devices. Such a predicament poses a grave threat to the economic and social welfare of the affected region, and in extreme scenarios, can result in a debilitating grid collapse. However, existing models lack the deep feature extraction capability and cannot accurately predict the uncertainty of electricity demand. Thus, a multitask integrated deep-learning probabilistic prediction with multidimensional feature extraction based on granularity information and quantile regression is explored in this study to solve the insufficient feature extraction problem in probabilistic prediction. In the proposed scheme, we designed a multi-layer feature extraction framework, which information granularity based on fuzzy rough sets to extract time-domain features, multilayer Laplace operators to extract features globally, and quantile regression recurrent neural network variants to extract time context information. In addition, the Pareto integration method is extended to capture better individuals. The experimental results demonstrate that the proposed system can effectively improve deterministic forecasting and uncertainty analysis of electricity demand and manage daily fluctuations.
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