期刊
EXPERT SYSTEMS WITH APPLICATIONS
卷 187, 期 -, 页码 -出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.eswa.2021.115911
关键词
Smart Grid; Smart Meter; Data Preprocessing; Missing Value Imputation; Advanced Metering Infrastructure; Particle Swarm Optimization
类别
资金
- Science and Engineering Research Board (SERB) , India under Early Career Research (ECR) Scheme [ECR/2017/000827]
This paper proposes a stage-wise missing value treatment approach for smart meter data using multiple data imputation algorithms. The study validates the effectiveness of the approach by using a real-time institutional smart meter dataset and a complete time-series dataset from Kaggle. Simulation results show that the proposed approach performs well in imputing missing values and is validated using Root Mean Square Error.
In recent years, the prediction model developed from smart meter data has been essential to analyze the load behavior of the customer, and to ensure reliability, it is necessary to have complete time-series data. However, due to practical limitations, there occur missing values in the smart meter data affecting the accuracy of the prediction model. Customers dealt in literature so far mostly belonged to residential, commercial, and industrial categories. In this paper, a stage-wise missing value treatment approach involving particle swarm optimization (PSO) comprising six stages has been proposed for the identification, classification, and imputation of missing values through multiple algorithms of data imputation in the smart meter dataset of an Indian institution. A realtime institutional smart meter dataset for 2019 has been considered in which the missing values are classified into four different classes based on their position and occurrence. Also, a complete time-series dataset from Kaggle has been considered to test the validity of the proposed approach. Simulation results using the R statistical package and MATLAB indicate that one of the imputation algorithms performs the best for each class of missing values, and its performance has been validated using the Root Mean Square Error (RMSE).
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